Mercurial > repos > siwaa > redelac_stics_t
comparison config/outputs.csv @ 0:7f8f474a7bd7 draft
"planemo upload for repository https://forgemia.inra.fr/redelac commit 29a2aee3b41d8da4d056600ea5cf4af978c714b9"
| author | siwaa |
|---|---|
| date | Tue, 06 Feb 2024 09:21:00 +0000 |
| parents | |
| children |
comparison
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| -1:000000000000 | 0:7f8f474a7bd7 |
|---|---|
| 1 abso(n);N uptake rate by the crop;kg.ha-1.d-1;p;real;n;2 | |
| 2 age_prairie;age of the forage crop since sowing;year;p;integer;0;1 | |
| 3 airg(n);daily amount of irrigation water;mm.d-1;sc;real;n;0 | |
| 4 albedolai;albedo of the crop including soil and vegetation;SD;sc;real;0;0 | |
| 5 allocfruit;allocation ratio of assimilates to the fruits;0-1;p;real;0;2 | |
| 6 amm_1_30;amount of NH4-N in the soil layer 1 to 30 cm;kg.ha-1;sc;real;0;0 | |
| 7 amm_31_60;amount of NH4-N in the soil layer 31-60 cm;kg.ha-1;sc;real;0;0 | |
| 8 amm_61_90;amount of NH4-N in the soil layer 61-90 cm;kg.ha-1;sc;real;0;0 | |
| 9 ammomes;amount of NH4-N in soil over the depth profmes;kg.ha-1;sc;real;0;0 | |
| 10 amptcultmat;mean daily temperature range (tcult) during the reproductive phase (stages lax - rec);degreeC;c;real;0;0 | |
| 11 anit(n);daily amount of fertiliser-N added to crop;kg.ha-1.d-1;sc;real;n;0 | |
| 12 anit_engrais(n);Daily nitrogen provided by fertiliser;kgN.ha-1 j-1;sc;real;n;0 | |
| 13 anit_uree(n);amount of animal urine returned to the soil;kgN.ha-1 j-1;sc;real;n;0 | |
| 14 anoxmoy;index of anoxia over the root depth;0-1;p;real;0;1 | |
| 15 AZamm(1);amount of NH4-N in soil layer 1;kg.ha-1;sc;real;1;0 | |
| 16 AZamm(2);amount of NH4-N in soil layer 2;kg.ha-1;sc;real;2;0 | |
| 17 AZamm(3);amount of NH4-N in soil layer 3;kg.ha-1;sc;real;3;0 | |
| 18 AZamm(4);amount of NH4-N in soil layer 4;kg.ha-1;sc;real;4;0 | |
| 19 AZamm(5);amount of NH4-N in soil layer 5;kg.ha-1;sc;real;5;0 | |
| 20 azlesd;daily amount of NO3-N leached in mole drains;kg.ha-1.d-1;soil;real;0;0 | |
| 21 AZnit(1);amount of NO3-N in soil layer 1;kg.ha-1;soil;real;1;0 | |
| 22 AZnit(2);amount of NO3-N in soil layer 2;kg.ha-1;soil;real;2;0 | |
| 23 AZnit(3);amount of NO3-N in soil layer 3;kg.ha-1;soil;real;3;0 | |
| 24 AZnit(4);amount of NO3-N in soil layer 4;kg.ha-1;soil;real;4;0 | |
| 25 AZnit(5);amount of NO3-N in soil layer 5;kg.ha-1;soil;real;5;0 | |
| 26 azomes;amount of NO3-N in soil over the depth profmes;kg.ha-1;sc;real;0;0 | |
| 27 azsup_by_horizon(1);lixiviation under the horizon 1;kgN.ha-1;sc;real;1;0 | |
| 28 azsup_by_horizon(2);lixiviation under the horizon 2;kgN.ha-1;sc;real;2;0 | |
| 29 azsup_by_horizon(3);lixiviation under the horizon 3;kgN.ha-1;sc;real;3;0 | |
| 30 azsup_by_horizon(4);lixiviation under the horizon 4;kgN.ha-1;sc;real;4;0 | |
| 31 azsup_by_horizon(5);lixiviation under the horizon 5;kgN.ha-1;sc;real;5;0 | |
| 32 azsup_under_profmes;lixiviation under the depth of measurement profmes;kgN.ha-1;sc;real;0;0 | |
| 33 bouchon;index showing if the shrinkage slots are opened (0) or closed (1);code 0/1;sc;real;0;0 | |
| 34 Cb;amount of C in the microbial biomass decomposing organic residues mixed with soil;kg.ha-1;sc;real;0;0 | |
| 35 Cbmulch;amount of C in the microbial biomass decomposing organic residues at soil surface (mulch);kg.ha-1;sc;real;0;0 | |
| 36 cdemande;cumulative amount of N needed by the plant (plant needs);kg.ha-1;p;real;0;1 | |
| 37 cEdirect;total evaporation (water evaporated by the soil + intercepted by leaves and mulch) integrated over the cropping season;mm;sc;real;0;1 | |
| 38 cEdirecttout;total evaporation (water evaporated by the soil + intercepted by leaves and mulch) integrated over the simulation period;mm;sc;real;0;1 | |
| 39 cep;cumulative transpiration over the cropping season of plant 1;mm;p;real;0;1 | |
| 40 cep2;cumulative transpiration over the cropping season of plants 1 and 2;mm;sc;real;0;1 | |
| 41 ces;cumulative evaporation over the cropping season;mm;p;real;0;1 | |
| 42 cestout;cumulative evaporation over the simulation period;mm;sc;real;0;0 | |
| 43 cet;cumulative evapotranspiration over the cropping season;mm;p;real;0;1 | |
| 44 cet_from_lev;cumulative evapotranspiration over the cropping season (from emergence or budbreak);mm;sc;real;0;1 | |
| 45 cet_from_plt;cumulative evapotranspiration over the cropping season (from planting or budbreak);mm;sc;real;0;1 | |
| 46 cetm;cumulative maximum evapotranspiration over the cropping season;mm;p;real;0;1 | |
| 47 Cetmtout;cumulative maximum evapotranspiration over the simulation period;mm;c;real;0;0 | |
| 48 cetp;cumulative potential evapotranspiration (PET) over the cropping season;mm;p;real;0;1 | |
| 49 chargefruit;number of filling grains or ripe fruits;m-2;p;real;0;1 | |
| 50 Chuma;amount of active C in humified organic matter;kg.ha-1;sc;real;0;0 | |
| 51 Chumi;amount of inert C in humified organic matter;kg.ha-1;sc;real;0;0 | |
| 52 Chumt;amount of C in humified organic matter (active + inert fractions);kg.ha-1;sc;real;0;0 | |
| 53 cintermulch;cumulative amount of rain intercepted by the mulch;mm;sc;real;0;0 | |
| 54 cinterpluie;cumulative amount of rain intercepted by the leaves;mm;p;real;0;1 | |
| 55 Cmulch;amount of C in the whole plant mulch;kg.ha-1;sc;real;0;0 | |
| 56 Cmulchdec;amount of C in the decomposable mulch;kg.ha-1;sc;real;0;0 | |
| 57 Cmulchnd;amount of C in the non decomposable mulch;kg.ha-1;sc;real;0;0 | |
| 58 CNgrain;N concentration in fruits;% dry weight;p;real;0;2 | |
| 59 Cnondec(1);amount of C in the undecomposable mulch made of residues of type 1;kg.ha-1;sc;real;1;0 | |
| 60 Cnondec(10);amount of C in the undecomposable mulch made of residues of type 10;kg.ha-1;sc;real;10;0 | |
| 61 Cnondec(2);amount of C in the undecomposable mulch made of residues of type 2;kg.ha-1;sc;real;2;0 | |
| 62 Cnondec(3);amount of C in the undecomposable mulch made of residues of type 3;kg.ha-1;sc;real;3;0 | |
| 63 Cnondec(4);amount of C in the undecomposable mulch made of residues of type 4;kg.ha-1;sc;real;4;0 | |
| 64 Cnondec(5);amount of C in the undecomposable mulch made of residues of type 5;kg.ha-1;sc;real;5;0 | |
| 65 Cnondec(6);amount of C in the undecomposable mulch made of residues of type 6;kg.ha-1;sc;real;6;0 | |
| 66 Cnondec(7);amount of C in the undecomposable mulch made of residues of type 7;kg.ha-1;sc;real;7;0 | |
| 67 Cnondec(8);amount of C in the undecomposable mulch made of residues of type 8;kg.ha-1;sc;real;8;0 | |
| 68 Cnondec(9);amount of C in the undecomposable mulch made of residues of type 9;kg.ha-1;sc;real;9;0 | |
| 69 CNplante;N concentration in the aboveground plant;% dry weight;p;real;0;2 | |
| 70 CO2(n);atmospheric CO2 concentration above 330 ppm;ppm;c;real;n;0 | |
| 71 CO2hum;daily amount of CO2-C emitted due to the mineralisation of soil humus;kg.ha-1.d-1;sc;real;0;0 | |
| 72 CO2res;daily amount of CO2-C emitted due to the mineralisation of organic residues;kg.ha-1.d-1;sc;real;0;0 | |
| 73 CO2sol;daily amount of CO2-C emitted due to soil mineralisation (humus and organic residues);kg.ha-1.d-1;sc;real;0;0 | |
| 74 codebbch_output;code of the bbch stage (see plant file);0-99;p;integer;0;1 | |
| 75 concN_W_drained;daily nitrate concentration in drainage water;mg NO3.l-1.day;soil;real;0;0 | |
| 76 concNO3les;nitrate concentration in drained water;mg NO3.l-1;soil;real;0;0 | |
| 77 concNO3sol(1);nitrate concentration in soil layer 1;mg NO3.l-1;sc;real;1;0 | |
| 78 concNO3sol(2);nitrate concentration in soil layer 2;mg NO3.l-1;sc;real;2;0 | |
| 79 concNO3sol(3);nitrate concentration in soil layer 3;mg NO3.l-1;sc;real;3;0 | |
| 80 concNO3sol(4);nitrate concentration in soil layer 4;mg NO3.l-1;sc;real;4;0 | |
| 81 concNO3sol(5);nitrate concentration in soil layer 5;mg NO3.l-1;sc;real;5;0 | |
| 82 condenit;ratio of actual to potential denitrifying rate;0-1;soil;real;0;0 | |
| 83 couvermulch;cover ratio of mulch;0-1;sc;real;0;0 | |
| 84 cpluie;cumulative amount of rain over the simulation period;mm;sc;real;0;0 | |
| 85 cprecip;cumulative water supply over the cropping season (precipitation + irrigation);mm;p;real;0;1 | |
| 86 cpreciptout;cumulative water supply over the simulation period (precipitation + irrigation);mm;sc;real;0;0 | |
| 87 Cr;amount of C in organic residues mixed with soil in the profhum layer;kg.ha-1;sc;real;0;0 | |
| 88 Cresiduprofil(1);amount of C in residues over the soil depth profhum in the residue type 1;kg.ha-1;sc;real;1;0 | |
| 89 Cresiduprofil(10);amount of C in residues over the soil depth profhum in the residue type 10;kg.ha-1;sc;real;10;0 | |
| 90 Cresiduprofil(2);amount of C in residues over the soil depth profhum in the residue type 2;kg.ha-1;sc;real;2;0 | |
| 91 Cresiduprofil(3);amount of C in residues over the soil depth profhum in the residue type 3;kg.ha-1;sc;real;3;0 | |
| 92 Cresiduprofil(4);amount of C in residues over the soil depth profhum in the residue type 4;kg.ha-1;sc;real;4;0 | |
| 93 Cresiduprofil(5);amount of C in residues over the soil depth profhum in the residue type 5;kg.ha-1;sc;real;5;0 | |
| 94 Cresiduprofil(6);amount of C in residues over the soil depth profhum in the residue type 6;kg.ha-1;sc;real;6;0 | |
| 95 Cresiduprofil(7);amount of C in residues over the soil depth profhum in the residue type 7;kg.ha-1;sc;real;7;0 | |
| 96 Cresiduprofil(8);amount of C in residues over the soil depth profhum in the residue type 8;kg.ha-1;sc;real;8;0 | |
| 97 Cresiduprofil(9);amount of C in residues over the soil depth profhum in the residue type 9;kg.ha-1;sc;real;9;0 | |
| 98 crg;cumulative global radiation over the cropping season;MJ.m-2;p;real;0;1 | |
| 99 crgtout;cumulative global radiation over the simulation period;MJ.m-2;c;real;0;0 | |
| 100 Crprof;amount of C in deep organic residues mixed with soil (below the profhum depth);kg.ha-1;sc;real;0;0 | |
| 101 Crtout;total amount of C in organic residues present over the whole soil profile;kg.ha-1;sc;real;0;0 | |
| 102 CsurNrac;C/N ratio of living roots; g g-1;sc;real;0;0 | |
| 103 CsurNracmort;C/N ratio of dead roots (cumulative); g g-1;sc;real;0;0 | |
| 104 CsurNres_pature;C/N ratio of residues in case of pasture; g g-1;sc;real;0;0 | |
| 105 CsurNsol;C/N ratio of soil organic matter in the profhum layer; g g-1;soil;real;0;0 | |
| 106 ctairtout;cumulative air temperature (tair) over the simulation period;degreeC;c;real;0;0 | |
| 107 ctcult;cumulative crop temperature (tcult) over the cropping season;degreeC;p;real;0;1 | |
| 108 ctculttout;cumulative crop temperature (tcult) over the simulation period;degreeC;c;real;0;0 | |
| 109 ctetptout;cumulative potential evapotranspiration (pet) over the simulation period;mm;c;real;0;0 | |
| 110 ctmoy;cumulative air temperature over the cropping season;degreeC;p;real;0;1 | |
| 111 cum_et0;cumulative maximum evapotranspiration over the cropping season (eop+eos);mm;p;real;0;0 | |
| 112 cum_et0_from_lev;cumulative maximum evapotranspiration over the cropping season from germination or budbreak (eop+eos);mm;sc;real;0;0 | |
| 113 cum_immob;cumulative amount of N immobilised by the microbial biomass decomposing residues;kg.ha-1;sc;real;0;0 | |
| 114 cum_immob_positif;cumulative amount of N immobilised by the microbial biomass decomposing residues (positive value);kg.ha-1;sc;real;0;0 | |
| 115 cumlracz;cumulative length of active roots per soil surface;cm.cm-2;p;real;0;1 | |
| 116 cumraint;cumulative intercepted radiation;MJ.m-2;p;real;0;1 | |
| 117 cumrg;cumulative global radiation during the stage sowing-harvest;MJ.m-2;p;real;0;1 | |
| 118 cumvminh;daily amount of N mineralised from humus;kg.ha-1.d-1;soil;real;0;0 | |
| 119 cumvminr;daily amount of N mineralised from organic residues;kg.ha-1.d-1;soil;real;0;0 | |
| 120 da(1);bulk density of the layer 1 (recalculated by the model if codeDSTtass is 1);g.cm-3;soil;real;1;0 | |
| 121 da(2);bulk density of the layer 2 (recalculated by the model if codeDSTtass is 1);g.cm-3;soil;real;2;0 | |
| 122 date_irrigations(1);date of irrigation;julian day;sc;integer;1;0 | |
| 123 date_irrigations(10);date of irrigation;julian day;sc;integer;10;0 | |
| 124 date_irrigations(11);date of irrigation;julian day;sc;integer;11;0 | |
| 125 date_irrigations(12);date of irrigation;julian day;sc;integer;12;0 | |
| 126 date_irrigations(13);date of irrigation;julian day;sc;integer;13;0 | |
| 127 date_irrigations(14);date of irrigation;julian day;sc;integer;14;0 | |
| 128 date_irrigations(15);date of irrigation;julian day;sc;integer;15;0 | |
| 129 date_irrigations(16);date of irrigation;julian day;sc;integer;16;0 | |
| 130 date_irrigations(17);date of irrigation;julian day;sc;integer;17;0 | |
| 131 date_irrigations(18);date of irrigation;julian day;sc;integer;18;0 | |
| 132 date_irrigations(19);date of irrigation;julian day;sc;integer;19;0 | |
| 133 date_irrigations(2);date of irrigation;julian day;sc;integer;2;0 | |
| 134 date_irrigations(20);date of irrigation;julian day;sc;integer;20;0 | |
| 135 date_irrigations(21);date of irrigation;julian day;sc;integer;21;0 | |
| 136 date_irrigations(22);date of irrigation;julian day;sc;integer;22;0 | |
| 137 date_irrigations(23);date of irrigation;julian day;sc;integer;23;0 | |
| 138 date_irrigations(24);date of irrigation;julian day;sc;integer;24;0 | |
| 139 date_irrigations(25);date of irrigation;julian day;sc;integer;25;0 | |
| 140 date_irrigations(26);date of irrigation;julian day;sc;integer;26;0 | |
| 141 date_irrigations(27);date of irrigation;julian day;sc;integer;27;0 | |
| 142 date_irrigations(28);date of irrigation;julian day;sc;integer;28;0 | |
| 143 date_irrigations(29);date of irrigation;julian day;sc;integer;29;0 | |
| 144 date_irrigations(3);date of irrigation;julian day;sc;integer;3;0 | |
| 145 date_irrigations(30);date of irrigation;julian day;sc;integer;30;0 | |
| 146 date_irrigations(4);date of irrigation;julian day;sc;integer;4;0 | |
| 147 date_irrigations(5);date of irrigation;julian day;sc;integer;5;0 | |
| 148 date_irrigations(6);date of irrigation;julian day;sc;integer;6;0 | |
| 149 date_irrigations(7);date of irrigation;julian day;sc;integer;7;0 | |
| 150 date_irrigations(8);date of irrigation;julian day;sc;integer;8;0 | |
| 151 date_irrigations(9);date of irrigation;julian day;sc;integer;9;0 | |
| 152 day_after_begin_simul;number of days from the beginning of simulation;days;sc;integer;0;0 | |
| 153 day_after_emergence;number of days after emergence;days;p;integer;0;1 | |
| 154 day_after_sowing;days after sowing or planting;days;sc;integer;0;0 | |
| 155 day_cut;cut day;julian day;p;integer;0;0 | |
| 156 DCbmulch;change in C amount in microbial biomass decomposing mulch between the beginning and the end of simulation;kg.ha-1;sc;real;0;0 | |
| 157 DChumt;change in humified organic C in soil between beginning and end of simulation;kg.ha-1;sc;real;0;0 | |
| 158 DCmulch;change in mulch C between the beginning and end of simulation;kg.ha-1;sc;real;0;0 | |
| 159 DCr;change in C of organic residues between begining and end of simulation;kg.ha-1;sc;real;0;0 | |
| 160 DCrprof;change in deep root C between the beginning and end of simulation;kg.ha-1;sc;real;0;0 | |
| 161 deltai(n);daily increase in green leaf index per soil surface;m2.m-2.d-1;p;real;n;2 | |
| 162 deltaz;rate of deepening of the root front;cm.d-1;p;real;0;1 | |
| 163 demande;daily N requirement of the plant to maximise crop growth;kg.ha-1.d-1;p;real;0;2 | |
| 164 demandeper;daily N requirement of the perennial organs to maximise crop growth;kg.ha-1.d-1;p;real;0;2 | |
| 165 demanderac;daily N requirementof the roots to maximise crop growth;kg.ha-1.d-1;p;real;0;2 | |
| 166 demandetot;daily N requirement of the plant to maximise crop growth after susbtracting N fixation;kg.ha-1.d-1;p;real;0;0 | |
| 167 densite;actual sowing density;plants.m-2;p;real;0;1 | |
| 168 densiteequiv;equivalent plant density for the understorey crop;plants.m-2;p;real;0;1 | |
| 169 dfol;within the shape leaf density;m2.m-3;p;real;0;1 | |
| 170 diftemp1intercoupe;mean difference between crop and air temperatures during the vegetative phase (emergence - maximum LAI);degreeC;p;real;0;0 | |
| 171 diftemp2intercoupe;mean difference between crop and air temperatures during the reproductive phase (maximum LAI - maturity);degreeC;p;real;0;0 | |
| 172 dltags;daily growth rate of the plantlets;t.ha-1.d-1;p;real;0;2 | |
| 173 dltaisen;daily change in the senescent leaf area index;m2.m-2.d-1;p;real;0;2 | |
| 174 dltams(n);daily growth rate of the plant;t.ha-1.d-1;p;real;n;2 | |
| 175 dltamsen;daily senescence rate of the plant;t.ha-1.d-1;p;real;0;2 | |
| 176 dltaremobil;daily amount of perennial reserves remobilised;t.ha-1.d-1;p;real;0;2 | |
| 177 dltaremobilN;daily amount of perennial N reserves remobilised;kg.ha-1.d-1;p;real;0;2 | |
| 178 dltmsrac_plante;pour sorties ArchiSTICS: biomasse journaliere allouee aux racines; g.m2.sol;p;real;0;0 | |
| 179 DNbmulch;change in biomass N associated with the mulch between beginning and end of simulation;kg.ha-1;sc;real;0;0 | |
| 180 DNhumt;change in humified organic N in soil between beginning and end of simulation;kg.ha-1;sc;real;0;0 | |
| 181 DNmulch;change in mulch N between beginning and end of simulation;kg.ha-1;sc;real;0;0 | |
| 182 DNr;change in N of organic residues between begining and end of simulation;kg.ha-1;sc;real;0;0 | |
| 183 DNrprof;change in N of deep dead roots between begining and end of simulation;kg.ha-1;sc;real;0;0 | |
| 184 DQNtot2;change in N content of the two plants (aerial + root + perennial organs) between beginning and end of simulation;kg.ha-1;sc;real;0;0 | |
| 185 drain;daily amount of water drained at the base of the soil profile;mm.d-1;sc;real;0;0 | |
| 186 drain_from_lev;cumulative amount of water drained at the base of the soil profile during the crop cycle (emergence or budbreak to harvest);mm;sc;real;0;0 | |
| 187 drain_from_plt;cumulative amount of water drained at the base of the soil profile during the crop cycle (planting to harvest);mm;sc;real;0;0 | |
| 188 drat;cumulative amount of water drained at the base of the soil profile during the simulation period;mm;sc;real;0;0 | |
| 189 drlsenmortalle;root biomass corresponding to dead tillers;t.ha-1.d-1;p;real;0;0 | |
| 190 DSMN;change in soil mineral N between beginning and end of simulation;kg.ha-1;sc;real;0;0 | |
| 191 DSOC;change in soil organic C (without residues) between beginning and end of simulation;kg.ha-1;sc;real;0;0 | |
| 192 DSOCtot;change in total soil organic C (with residues) between beginning and end of simulation;kg.ha-1;sc;real;0;0 | |
| 193 DSON;change in soil organic N (without residues) between beginning and end of simulation;kg.ha-1;sc;real;0;0 | |
| 194 DSONtot;change in total soil organic N (with residues) between beginning and end of simulation;kg.ha-1;sc;real;0;0 | |
| 195 DSTN;change in total soil N (mineral + organic) between beginning and end of simulation;kg.ha-1;sc;real;0;0 | |
| 196 dtj(n);thermal time for root growth;degreeC.d;p;real;n;0 | |
| 197 dureehumec;number of hours which are wet (rainy days or days when tcult < dew point);hour;c;real;0;0 | |
| 198 dureeRH;number of night hours during which relative humidity exceeds a 90% threshold;hour;c;real;0;0 | |
| 199 durvie(n);actual life span of the leaf surface;degreeC;p;real;n;3 | |
| 200 eai;equilvalent leaf area for ear;m2.m-2;p;real;0;2 | |
| 201 ebmax;maximum value of radiation use efficiency;cg.MJ-1;p;real;0;1 | |
| 202 ebmax_gr; Maximum radiation use efficiency during the vegetative stage (AMF-DRP);g MJ-1;p;real;0;0 | |
| 203 Edirect;daily amount of water evaporated by the soil + intercepted by leaves and mulch;mm.d-1;sc;real;0;0 | |
| 204 efda;reduction factor on root growth due to physical constraint (through bulk density);0-1;p;real;0;0 | |
| 205 efdensite;density factor on leaf area growth;0-1;p;real;0;0 | |
| 206 efdensite_rac;density factor on root growth;0-1;p;real;0;0 | |
| 207 efNrac_mean;reduction factor on root growth rate due to mineral N concentration;0-1;p;real;0;0 | |
| 208 em_N2O;daily amount of N2O-N emitted from soil;kg.ha-1.d-1;sc;real;0;0 | |
| 209 em_N2Oden;daily amount of N2O-N emitted from soil by denitrification;kg.ha-1.d-1;sc;real;0;0 | |
| 210 em_N2Onit;daily amount of N2O-N emitted from soil by nitrification;kg.ha-1.d-1;sc;real;0;0 | |
| 211 Emd;daily amount of water directly evaporated after leaves interception;mm.d-1;p;real;0;1 | |
| 212 emulch;daily amount of water directly evaporated after mulch interception;mm.d-1;sc;real;0;0 | |
| 213 eo;intermediary variable for the computation of evapotranspiration;mm.d-1;sc;real;0;0 | |
| 214 eop;daily maximum transpiration flux;mm.d-1;p;real;0;2 | |
| 215 eos;daily maximum evaporation flux;mm.d-1;sc;real;0;0 | |
| 216 ep;daily actual transpiration flux;mm.d-1;p;real;0;2 | |
| 217 epc_recal(1);thickness of the soil layer 1 (recalculated by the model if codeDSTtass is 1);cm;soil;real;1;0 | |
| 218 epc_recal(2);thickness of the soil layer 2 (recalculated by the model if codeDSTtass is 1);cm;soil;real;2;0 | |
| 219 epc_recal(3);thickness of the soil layer 3 (recalculated by the model if codeDSTtass is 1);cm;soil;real;3;0 | |
| 220 epc_recal(4);thickness of the soil layer 4 (recalculated by the model if codeDSTtass is 1);cm;soil;real;4;0 | |
| 221 epc_recal(5);thickness of the soil layer 5 (recalculated by the model if codeDSTtass is 1);cm;soil;real;5;0 | |
| 222 epsib;radiation use efficiency;t.ha-1.MJ-1.m2;p;real;0;2 | |
| 223 esol;daily actual soil evaporation flux;mm.d-1;sc;real;0;0 | |
| 224 et;daily evapotranspiration (esol + ep);mm.d-1;sc;real;0;0 | |
| 225 et0;daily maximun evapotranspiration flux (transpiration + soil evaporation);mm;p;real;0;0 | |
| 226 etm;daily maximum evapotranspiration (esol + eop);mm.d-1;sc;real;0;0 | |
| 227 etm_etr1moy;etm/etr ratio on the vegetative phase;0-1;p;real;0;1 | |
| 228 etm_etr2moy;etm/etr ratio on the reproductive phase;0-1;p;real;0;1 | |
| 229 etpp(n);daily potential evapotranspiration as given by the formula of Penman;mm.d-1;c;real;n;0 | |
| 230 etr_etm1moy;etr/etm ratio on the vegetative phase;0-1;p;real;0;1 | |
| 231 etr_etm2moy;etr/etm ratio on the reproductive phase;0-1;p;real;0;1 | |
| 232 exces(1);amount of water in the macroporosity of the layer 1;mm;sc;real;1;0 | |
| 233 exces(2);amount of water in the macroporosity of the layer 2;mm;sc;real;2;0 | |
| 234 exces(3);amount of water in the macroporosity of the layer 3;mm;sc;real;3;0 | |
| 235 exces(4);amount of water in the macroporosity of the layer 4;mm;sc;real;4;0 | |
| 236 exces(5);amount of water in the macroporosity of the layer 5;mm;sc;real;5;0 | |
| 237 exobiom;reduction factor on biomass growth due to water excess;0-1;p;real;0;1 | |
| 238 exofac;waterlogging index;0-1;p;real;0;1 | |
| 239 exofac1moy;mean value of the waterlogging index during the vegetative stage (emergence - fruit establishment);0-1;p;real;0;1 | |
| 240 exofac2moy;mean value of the waterlogging index during the reproductive stage (fruit establishment - maturity);0-1;p;real;0;1 | |
| 241 exolai;reduction factor on leaf growth due to water excess;0-1;p;real;0;1 | |
| 242 fapar;proportion of the radiation intercepted;0-1;p;real;0;2 | |
| 243 fco2;specie-dependant CO2 effect on radiation use efficiency;SD;p;real;0;0 | |
| 244 fco2s;specie-dependant CO2 effect onstomate closure;SD;p;real;0;0 | |
| 245 fgelflo;reduction factor on the number of fruits due to frost;0-1;p;real;0;1 | |
| 246 fixmaxvar;maximal rate of BNF (symbiotic fixation);kg.ha-1.d-1;p;real;0;2 | |
| 247 fixpot;potential rate of BNF (symbiotic fixation);kg.ha-1.d-1;p;real;0;2 | |
| 248 fixreel;actual rate of BNF (symbiotic fixation);kg.ha-1.d-1;p;real;0;2 | |
| 249 flurac;daily amount of N taken up by the plant when N uptake is limited by the plant capacity absorption;kg.ha-1.d-1;p;real;0;1 | |
| 250 flusol;daily amount of N taken up by the plant when N uptake is limited by the transfer from soil to root;kg.ha-1.d-1;p;real;0;1 | |
| 251 fpari;radiation effect on conversion efficiency;g.MJ-1;p;real;0;1 | |
| 252 fpari_gr;radiation factor on the calculation of conversion efficiency;g MJ-1;p;real;0;0 | |
| 253 fpft;daily sink capacity of fruits;g.m-2.d-1;p;real;0;2 | |
| 254 fpv(n);daily sink capacity of growing leaves;g.m-2.d-1;p;real;n;2 | |
| 255 FsNH3;daily amount of NH3-N emitted from soil by volatilisation;micro g.m-2.d-1;sc;real;0;0 | |
| 256 fstressgel;reduction factor on leaf growth due to frost;0-1;p;real;0;1 | |
| 257 ftemp;reduction factor on biomass growth due to temperature-related epsibmax;0-1;p;real;0;1 | |
| 258 fxa;reduction factor on BNF (symbiotic fixation) due to soil anoxia;0-1;sc;real;0;0 | |
| 259 fxn;reduction factor on BNF (symbiotic fixation) due to mineral N concentration;0-1;sc;real;0;0 | |
| 260 fxt;reduction factor on BNF (symbiotic fixation) due to soil temperature;0-1;sc;real;0;0 | |
| 261 fxw;reduction factor on BNF (symbiotic fixation) due to soil water content;0-1;sc;real;0;0 | |
| 262 gel1;stress factor on leaves damaged by frost before amf stage (end of juvenile phase );0-1;p;real;0;0 | |
| 263 gel1_percent;proportion of leaves damaged by frost before amf stage (end of juvenile phase );%;p;real;0;0 | |
| 264 gel2;stress factor on leaves damaged by frost after amf stage (end of juvenile phase );0-1;p;real;0;0 | |
| 265 gel2_percent;proportion of leaves damaged by frost after amf stage (end of juvenile phase );%;p;real;0;0 | |
| 266 gel3;stress factor on flowers or fruits damaged by frost;0-1;p;real;0;0 | |
| 267 gel3_percent;proportion of flowers or fruits damaged by frost;%;p;real;0;0 | |
| 268 GHG;Greenhouse Gas emission (CO2 + N2O) expressed in CO2eq/ha =Qem_N2O*44/28*296 -DSOC*44/12;kg.ha-1;sc;real;0;0 | |
| 269 grain_dry_weight_mg;Grain unit dry weight;mg;p;real;0;0 | |
| 270 H2Orec;water content of harvested organs;0-1;p;real;0;2 | |
| 271 H2Orec_percent;water content of harvested organs;% fresh weight;p;real;0;0 | |
| 272 hauteur;height of canopy;m;p;real;0;2 | |
| 273 HI_C;harvest index for carbon;0-1;p;real;0;0 | |
| 274 HI_N;harvest index for nitrogen;0-1;p;real;0;0 | |
| 275 Hmax;maximum height of water table between drains;cm;soil;real;0;0 | |
| 276 Hnappe;height of water table affecting plant growth;cm;soil;real;0;0 | |
| 277 Hpb;minimum depth of perched water table;cm;soil;real;0;0 | |
| 278 Hph;maximum depth of perched water table;cm;soil;real;0;0 | |
| 279 HR(1);water content of the soil layer 1;% dry weight;sc;real;1;0 | |
| 280 HR(2);water content of the soil layer 2;% dry weight;sc;real;2;0 | |
| 281 HR(3);water content of the soil layer 3;% dry weight;sc;real;3;0 | |
| 282 HR(4);water content of the soil layer 4;% dry weight;sc;real;4;0 | |
| 283 HR(5);water content of the soil layer 5;% dry weight;sc;real;5;0 | |
| 284 HR_mm(1);water content of the soil layer 1;mm;sc;real;1;0 | |
| 285 HR_mm(2);water content of the soil layer 2;mm;sc;real;2;0 | |
| 286 HR_mm(3);water content of the soil layer 3;mm;sc;real;3;0 | |
| 287 HR_mm(4);water content of the soil layer 4;mm;sc;real;4;0 | |
| 288 HR_mm(5);water content of the soil layer 5;mm;sc;real;5;0 | |
| 289 HR_mm_1_30;water content of the layer 1-30 cm;mm;sc;real;0;0 | |
| 290 HR_mm_31_60;water content of the layer 31-60 cm;mm;sc;real;0;0 | |
| 291 HR_mm_61_90;water content of the layer 61-90 cm;mm;sc;real;0;0 | |
| 292 HR_vol_1_10;water content of the layer 1-10 cm;mm-3.mm-3;sc;real;0;0 | |
| 293 HR_vol_1_30;water content of the layer 1-30 cm (table);mm-3.mm-3;sc;real;0;0 | |
| 294 HR_vol_121_150;water content of the layer 121-150 cm (table);mm-3.mm-3;sc;real;0;0 | |
| 295 HR_vol_151_180;water content of the layer 151-180 cm (table);mm-3.mm-3;sc;real;0;0 | |
| 296 HR_vol_31_60;water content of the layer 31-60 cm (table);mm-3.mm-3;sc;real;0;0 | |
| 297 HR_vol_61_90;water content of the layer 61-90 cm (table);mm-3.mm-3;sc;real;0;0 | |
| 298 HR_vol_91_120;water content of the layer 91-120 cm (table);mm-3.mm-3;sc;real;0;0 | |
| 299 huile;oil content of harvested organs;0-1;p;real;0;2 | |
| 300 huile_percent;oil content of harvested organs;% fresh weight;p;real;0;0 | |
| 301 humair;air moisture content;0-1;c;real;0;0 | |
| 302 humair_percent;air moisture content;% saturation;c;real;0;0 | |
| 303 humidite;air moisture content in the canopy;0-1;sc;real;0;0 | |
| 304 humidite_percent;air moisture content in the canopy;% saturation;sc;real;0;0 | |
| 305 humirac_mean;reduction factor on root growth due to soil water content (mean value over the root profile);0-1;p;real;0;1 | |
| 306 hur_10_vol;soil water content in the soil at 10 cm ;cm/cm;sc;real;0;0 | |
| 307 husup_by_horizon(1);drainage under the horizon 1;mm;sc;real;1;0 | |
| 308 husup_by_horizon(2);drainage under the horizon 2;mm;sc;real;2;0 | |
| 309 husup_by_horizon(3);drainage under the horizon 3;mm;sc;real;3;0 | |
| 310 husup_by_horizon(4);drainage under the horizon 4;mm;sc;real;4;0 | |
| 311 husup_by_horizon(5);drainage under the horizon 5;mm;sc;real;5;0 | |
| 312 husup_under_profmes;drainage under the depth of measurement profmes;mm;sc;real;0;0 | |
| 313 iamfs;date of amf stage (maximum acceleration of leaf growth, end of juvenile phase );julian day;p;integer;0;1 | |
| 314 idebdess;date of onset of water dynamics in harvested organs;julian day;p;integer;0;1 | |
| 315 idebdorms;date of entry into dormancy;julian day;p;integer;0;1 | |
| 316 idrps;starting date of filling of harvested organs;julian day;p;integer;0;1 | |
| 317 ifindorms;date of emergence from dormancy;julian day;p;integer;0;1 | |
| 318 iflos;date of flowering;julian day;p;integer;0;1 | |
| 319 iflos_minus_150;date of flowering minus150 degrees day;julian day;p;integer;0;1 | |
| 320 iflos_plus_150;date of flowering plus 150 degrees day;julian day;p;integer;0;1 | |
| 321 igers;date of germination;julian day;p;integer;0;1 | |
| 322 ilans;date of lan stage (leaf index nil);julian day;p;integer;0;1 | |
| 323 ilaxs;date of lax stage (leaf index maximum);julian day;p;integer;0;1 | |
| 324 ilevs;date of emergence;julian day;p;integer;0;1 | |
| 325 imats;date of start of physiological maturity;julian day;p;integer;0;1 | |
| 326 imontaisons;date of start of stem elongation;julian day;p;integer;0;0 | |
| 327 infil_recal(1);infiltrability parameter at the base of the layer 1;mm.d-1;soil;real;1;0 | |
| 328 infil_recal(2);infiltrability parameter at the base of the layer 2;mm.d-1;soil;real;2;0 | |
| 329 infil_recal(3);infiltrability parameter at the base of the layer 3;mm.d-1;soil;real;3;0 | |
| 330 infil_recal(4);infiltrability parameter at the base of the layer 4;mm.d-1;soil;real;4;0 | |
| 331 infil_recal(5);infiltrability parameter at the base of the layer 5;mm.d-1;soil;real;5;0 | |
| 332 inn;nitrogen nutrition index (NNI);0-2;p;real;0;2 | |
| 333 inn1intercoupe;average NNI during the cut (cut crop vegetative phase: emergence to maximum LAI);0-2;p;real;0;0 | |
| 334 inn1moy;average NNI during the vegetative stage;0-2;p;real;0;1 | |
| 335 inn2intercoupe;average NNI during the cut (cut crop reproductive phase: maximum LAI to maturity);0-2;p;real;0;0 | |
| 336 inn2moy;average NNI during the reproductive stage;0-2;p;real;0;1 | |
| 337 innlai;reduction factor on leaf growth due to NNI (nitrogen deficiency);innmin to 1;p;real;0;2 | |
| 338 inns;reduction factor on biomass growth due to NNI (nitrogen deficiency);innmin to 1;p;real;0;2 | |
| 339 innsenes;nitrogen stress index affecting leaves death;innmin to 1;p;real;0;2 | |
| 340 inous;ending date for setting of harvested organs;julian day;p;real;0;1 | |
| 341 intermulch;daily amount of water intercepted by the mulch (vegetal);mm.d-1;sc;real;0;0 | |
| 342 interpluie;daily amount of water intercepted by leaves;mm.d-1;p;real;0;2 | |
| 343 iplts;date of sowing or planting;julian day;p;integer;0;1 | |
| 344 irazo(n);nitrogen harvest index;0-1;p;real;n;2 | |
| 345 ircarb(n);carbon harvest index;0-1;p;real;n;2 | |
| 346 irecs;date of harvest (first if several);julian day;p;integer;0;1 | |
| 347 irrigjN;daily amount of mineral N added by irrigation;kg.ha-1.d-1;sc;real;0;0 | |
| 348 irrigN;cumulative amount of mineral N added by irrigation;kg.ha-1;sc;real;0;0 | |
| 349 isens;date of begninning leaf senescence stage;julian day;p;integer;0;1 | |
| 350 izrac;water excess stress index on roots;0-1;p;real;0;1 | |
| 351 lai(n);leaf area index (table);m2.m-2;p;real;n;2 | |
| 352 lai_mx_av_cut;LAI before cut (for cut crops , for others = lai(n) );SD;p;real;0;1 | |
| 353 laimax;maximum leaf area index;m2.m-2;p;real;0;2 | |
| 354 laisen(n);leaf area index of senescent leaves (table);m2.m-2;p;real;n;2 | |
| 355 largeur;width of the plant shape;m;p;real;0;1 | |
| 356 leaching_from_lev;cumulative amount of NO3-N leached at the base of the soil profile during the crop cycle ( emergence or budbreak to harvest);kg.ha-1;sc;real;0;0 | |
| 357 leaching_from_plt;cumulative amount of NO3-N leached at the base of the soil profile during the crop cycle (planting to harvest);kg.ha-1;sc;real;0;0 | |
| 358 leai;Leaf+ear area index = lai +eai;m2.m-2;p;real;0;2 | |
| 359 lessiv;daily amount of NO3-N leached at the base of the soil profile;kg.ha-1.d-1;sc;real;0;0 | |
| 360 lracf(1);root length density of fine roots in layer 1;cm.cm-3;p;real;1;0 | |
| 361 lracf(2);root length density of fine roots in layer 2;cm.cm-3;p;real;2;0 | |
| 362 lracf(3);root length density of fine roots in layer 3;cm.cm-3;p;real;3;0 | |
| 363 lracf(4);root length density of fine roots in layer 4;cm.cm-3;p;real;4;0 | |
| 364 lracf(5);root length density of fine roots in layer 5;cm.cm-3;p;real;5;0 | |
| 365 lracg(1);root length density of coarse roots in layer 1;cm.cm-3;p;real;1;0 | |
| 366 lracg(2);root length density of coarse roots in layer 2;cm.cm-3;p;real;2;0 | |
| 367 lracg(3);root length density of coarse roots in layer 3;cm.cm-3;p;real;3;0 | |
| 368 lracg(4);root length density of coarse roots in layer 4;cm.cm-3;p;real;4;0 | |
| 369 lracg(5);root length density of coarse roots in layer 5;cm.cm-3;p;real;5;0 | |
| 370 LRACH(1);root length density in soil layer 1;cm.cm-3;p;real;1;0 | |
| 371 LRACH(2);root length density in soil layer 2;cm.cm-3;p;real;2;0 | |
| 372 LRACH(3);root length density in soil layer 3;cm.cm-3;p;real;3;0 | |
| 373 LRACH(4);root length density in soil layer 4;cm.cm-3;p;real;4;0 | |
| 374 LRACH(5);root length density in soil layer 5;cm.cm-3;p;real;5;0 | |
| 375 lracsentotf;cumulative length of senescent roots;cm root.cm-2 soil;p;real;0;1 | |
| 376 lracsentotg;cumulative length of senescent roots;cm root.cm-2 soil;p;real;0;1 | |
| 377 mabois;biomass removed by pruning;t.ha-1;p;real;0;2 | |
| 378 maenfruit;biomass of harvested organ envelops;t.ha-1;p;real;0;2 | |
| 379 mafauche;biomass of forage cuts;t.ha-1;p;real;0;0 | |
| 380 mafauchetot;cumulative biomass of forage cuts;t.ha-1;p;real;0;0 | |
| 381 mafeuil;biomass of leaves;t.ha-1;p;real;0;2 | |
| 382 mafeuil_kg_ha;Dry matter of leaves;kg.ha-1;p;real;0;0 | |
| 383 mafeuiljaune;biomass of yellow leaves;t.ha-1;p;real;0;2 | |
| 384 mafeuiltombe;biomass of fallen leaves;t.ha-1;p;real;0;2 | |
| 385 mafeuiltombefauche;biomass of fallen leaves between two cuts;t.ha-1;p;real;0;1 | |
| 386 mafeuilverte;biomass of green leaves;t.ha-1;p;real;0;2 | |
| 387 mafou;biomass of harvested organs for cut crops;t.ha-1;p;real;0;1 | |
| 388 mafrais;aboveground fresh matter;t.ha-1;p;real;0;2 | |
| 389 mafruit;biomass of harvested organs;t.ha-1;p;real;0;1 | |
| 390 mafruit_kg_ha;Dry matter of harvested organs;kg.ha-1;p;real;0;0 | |
| 391 maperenne;biomass of perennial organs;t.ha-1;p;real;0;2 | |
| 392 maperennemort;biomass of dead perennial organs;t.ha-1;p;real;0;2 | |
| 393 masec(n);biomass of aboveground plant (table);t.ha-1;p;real;n;2 | |
| 394 masec_kg_ha;Aboveground dry matter;kg.ha-1;p;real;0;0 | |
| 395 masec_mx_av_cut;Aboveground dry matter before cut(for cut crops, for others = masec(n) );t.ha-1;p;real;0;1 | |
| 396 masecneo;biomass of newly-formed organs;t.ha-1;p;real;0;2 | |
| 397 masecnp;biomass of aerials and non perennial organs;t.ha-1;p;real;n;2 | |
| 398 masectot;total plant biomass (aerials + roots + perennial organs);t.ha-1;p;real;0;1 | |
| 399 masecveg;biomass of vegetative organs;t.ha-1;p;real;0;2 | |
| 400 matigestruc;biomass of stems (only structural parts);t.ha-1;p;real;0;2 | |
| 401 matigestruc_kg_ha;Dry matter of stems (only structural parts);kg.ha-1;p;real;0;0 | |
| 402 matuber;biomass of tuber (harvested organs, only calculated for sugarbeet);t.ha-1;p;real;0;1 | |
| 403 mean_swfac_flo_p_m_150;swfac mean on the period flowering minus 150 degrees day to flowering plus 150 degrees days;0-1;p;real;0;1 | |
| 404 mortalle;daily number of dying tillers;d-1;p;real;0;1 | |
| 405 mortmasec;cumulative biomass of dead tillers;t.ha-1;p;real;0;1 | |
| 406 mortreserve;biomass of reserves corresponding to dead tillers;t.ha-1.d-1;p;real;0;1 | |
| 407 MSexporte;cumulative amount of harvested biomass;t.ha-1;p;real;0;1 | |
| 408 msjaune;senescent biomass of the plant;t.ha-1;p;real;0;2 | |
| 409 msneojaune;newly-formed senescent biomass;t.ha-1;p;real;0;2 | |
| 410 msrac(n);biomass of roots;t.ha-1;p;real;n;0 | |
| 411 msracf(1);biomass of fine roots in layer 1;t.ha-1;p;real;1;0 | |
| 412 msracf(2);biomass of fine roots in layer 2;t.ha-1;p;real;2;0 | |
| 413 msracf(3);biomass of fine roots in layer 3;t.ha-1;p;real;3;0 | |
| 414 msracf(4);biomass of fine roots in layer 4;t.ha-1;p;real;4;0 | |
| 415 msracf(5);biomass of fine roots in layer 5;t.ha-1;p;real;5;0 | |
| 416 msracg(1);biomass of coarse roots in layer 1;t.ha-1;p;real;1;0 | |
| 417 msracg(2);biomass of coarse roots in layer 2;t.ha-1;p;real;2;0 | |
| 418 msracg(3);biomass of coarse roots in layer 3;t.ha-1;p;real;3;0 | |
| 419 msracg(4);biomass of coarse roots in layer 4;t.ha-1;p;real;4;0 | |
| 420 msracg(5);biomass of coarse roots in layer 5;t.ha-1;p;real;5;0 | |
| 421 msracmort;Biomass of dead roots;t.ha-1;p;real;0;0 | |
| 422 msracmortf(1);cumulative biomass of dead fine roots in layer 1;t.ha-1;p;real;1;0 | |
| 423 msracmortf(2);cumulative biomass of dead fine roots in layer 2;t.ha-1;p;real;2;0 | |
| 424 msracmortf(3);cumulative biomass of dead fine roots in layer 3;t.ha-1;p;real;3;0 | |
| 425 msracmortf(4);cumulative biomass of dead fine roots in layer 4;t.ha-1;p;real;4;0 | |
| 426 msracmortf(5);cumulative biomass of dead fine roots in layer 5;t.ha-1;p;real;5;0 | |
| 427 msracmortg(1);cumulative biomass of dead coarse roots in layer 1;t.ha-1;p;real;1;0 | |
| 428 msracmortg(2);cumulative biomass of dead coarse roots in layer 2;t.ha-1;p;real;2;0 | |
| 429 msracmortg(3);cumulative biomass of dead coarse roots in layer 3;t.ha-1;p;real;3;0 | |
| 430 msracmortg(4);cumulative biomass of dead coarse roots in layer 4;t.ha-1;p;real;4;0 | |
| 431 msracmortg(5);cumulative biomass of dead coarse roots in layer 5;t.ha-1;p;real;5;0 | |
| 432 msrec_fou;biomass of harvested forage;t.ha-1;p;real;0;1 | |
| 433 msrec_fou_coupe;Dry matter of harvested organs for forages at cutting;t.ha-1;p;real;0;0 | |
| 434 msrec_fou_tot;Dry matter of harvestable organs for forages cumulated over the USM ;t.ha-1;p;real;0;0 | |
| 435 MSrecycle;cumulative amount of biomass returned to soil (unexported at harvest + fallen leaves);t.ha-1;p;real;0;1 | |
| 436 msresjaune;senescent residual dry matter;t.ha-1;p;real;0;2 | |
| 437 mstot;biomass of whole plant (aerial + root + perennial organs);t.ha-1;p;real;0;0 | |
| 438 N_mineralisation;cumulative amount of N mineralized from humus and organic residues;kg.ha-1;sc;real;0;0 | |
| 439 n_tot_irrigations;total number of rrigations;SD;sc;integer;0;0 | |
| 440 N_volatilisation;cumulative amount of N volatilised from fertilizer and organic inputs;kg.ha-1;soil;real;0;0 | |
| 441 Nb;amount of N in the microbial biomass decomposing organic residues mixed with soil;kg.ha-1;sc;real;0;0 | |
| 442 nb_days_frost_amf_120;number of days of tcultmin< tdebgel from amf stage to amf+120 degrees day;d;p;integer;0;1 | |
| 443 nb_days_humair_gt_90_percent1;number of days when humair_percent >=90% between amf and lax;days;sc;integer;0;0 | |
| 444 nb_days_humair_gt_90_percent2;number of days when humair_percent >=90% between lax and drp;days;sc;integer;0;0 | |
| 445 nbfeuille;number of leaves on main stem;SD;p;integer;0;1 | |
| 446 nbinflo_recal;number of inflorescences per plant;SD;p;real;0;1 | |
| 447 nbj0remp;number of shrivelling days;d;p;integer;0;1 | |
| 448 nbjechaudage;number of shrivelling days between lax and rec;d;c;integer;0;0 | |
| 449 nbjgel;number of frosting days active on the plant;d;p;integer;0;1 | |
| 450 nbjpourdecirecolte;number of days until harvest is launched when it is postponed by the harvest decision option;d;p;integer;0;1 | |
| 451 nbjpourdecisemis;number of days until sowing is launched when it is postponed by the sowing decision option;d;p;integer;0;1 | |
| 452 Nbmulch;amount of N in microbial biomass decomposing the decomposable mulch;kg.ha-1;sc;real;0;0 | |
| 453 NCbio;N/C ratio of biomass decomposing organic residues;SD;sc;real;0;0 | |
| 454 Ndenit;daily denitrification rate in soil (if option denitrification is activated);kg.ha-1.d-1;soil;real;0;0 | |
| 455 Ndfa;proportion of total plant N issued from N fixation;0-1;p;real;0;0 | |
| 456 Nexporte;cumulative amount of N removed by crop harvests;kg.ha-1;p;real;0;1 | |
| 457 nfruit(1);number of fruits in box 1;SD;p;real;1;2 | |
| 458 nfruit(2);number of fruits in box 2;SD;p;real;2;2 | |
| 459 nfruit(3);number of fruits in box 3;SD;p;real;3;2 | |
| 460 nfruit(4);number of fruits in box 4;SD;p;real;4;2 | |
| 461 nfruit(5);number of fruits in box 5;SD;p;real;5;2 | |
| 462 nfruit(nboite);number of fruits in last box;SD;p;real;p%P_nboite;2 | |
| 463 nfruit(nboite-1);number of fruits in last but one box;SD;p;real;p%P_nboite-1;2 | |
| 464 nfruitnou;number of set fruits;fruits.m-2;p;real;0;2 | |
| 465 Nhuma;amount of N in active soil organic matter;kg.ha-1;sc;real;0;0 | |
| 466 Nhumi;amount of N in inert soil organic matter;kg.ha-1;sc;real;0;0 | |
| 467 Nhumt;amount of N in humus soil organic matter (active + inert fractions);kg.ha-1;sc;real;0;0 | |
| 468 nit_1_30;amount of NO3-N in the soil layer 1 to 30 cm;kg.ha-1;sc;real;0;0 | |
| 469 nit_31_60;amount of NO3-N in the soil layer 31 to 60 cm;kg.ha-1;sc;real;0;0 | |
| 470 nit_61_90;amount of NO3-N in the soil layer 61 to 90 cm;kg.ha-1;sc;real;0;0 | |
| 471 soilN_rootdepth;amount of NO3-N in soil in the maximum root depth;kg.ha-1;sc;real;0;0 | |
| 472 nitetcult(n);number of iterations to calculate tcult;SD;c;integer;n;0 | |
| 473 nitrifj;daily nitrification rate in soil (if option nitrification is activated);kg.ha-1;soil;real;0;0 | |
| 474 Nmineral_from_lev;cumulative amount of N mineralized during the crop cycle ( emergence or budbreak-harvest);kg.ha-1;sc;real;0;0 | |
| 475 Nmineral_from_plt;cumulative amount of N mineralized during the crop cycle (sowing-harvest);kg.ha-1;sc;real;0;0 | |
| 476 Nmulch;amount of N in the plant mulch;kg.ha-1;sc;real;0;0 | |
| 477 Nmulchdec;amount of N in the decomposable mulch;kg.ha-1;sc;real;0;0 | |
| 478 Nmulchnd;amount of N in the non decomposable mulch;kg.ha-1;sc;real;0;0 | |
| 479 Nnondec(1);amount of N in the undecomposable mulch derived from residues type 1;kg.ha-1;sc;real;1;0 | |
| 480 Nnondec(10);amount of N in the undecomposable mulch derived from residues type 10;kg.ha-1;sc;real;10;0 | |
| 481 Nnondec(2);amount of N in the undecomposable mulch derived from residues type 2;kg.ha-1;sc;real;2;0 | |
| 482 Nnondec(3);amount of N in the undecomposable mulch derived from residues type 3;kg.ha-1;sc;real;3;0 | |
| 483 Nnondec(4);amount of N in the undecomposable mulch derived from residues type 4;kg.ha-1;sc;real;4;0 | |
| 484 Nnondec(5);amount of N in the undecomposable mulch derived from residues type 5;kg.ha-1;sc;real;5;0 | |
| 485 Nnondec(6);amount of N in the undecomposable mulch derived from residues type 6;kg.ha-1;sc;real;6;0 | |
| 486 Nnondec(7);amount of N in the undecomposable mulch derived from residues type 7;kg.ha-1;sc;real;7;0 | |
| 487 Nnondec(8);amount of N in the undecomposable mulch derived from residues type 8;kg.ha-1;sc;real;8;0 | |
| 488 Nnondec(9);amount of N in the undecomposable mulch derived from residues type 9;kg.ha-1;sc;real;9;0 | |
| 489 nodn;reduction factor on nodulation establishment (potential BNF) due to mineral N stress;0-1;sc;real;0;0 | |
| 490 Norgeng;daily amount of N immobilized from fertiliser;kg.ha-1.d-1;soil;real;0;0 | |
| 491 Nr;amount of N in the decomposing organic residues mixed with soil;kg.ha-1;sc;real;0;0 | |
| 492 Nrecycle;cumulative amount of N returned to soil (unexported at harvest + fallen leaves);kg.ha-1;p;real;0;1 | |
| 493 Nresiduprofil(1);amount of N in organic residues over the profhum depth, derived from residues type 1;kg.ha-1;sc;real;1;0 | |
| 494 Nresiduprofil(10);amount of N in organic residues over the profhum depth, derived from residues type 10;kg.ha-1;sc;real;10;0 | |
| 495 Nresiduprofil(2);amount of N in organic residues over the profhum depth, derived from residues type 2;kg.ha-1;sc;real;2;0 | |
| 496 Nresiduprofil(3);amount of N in organic residues over the profhum depth, derived from residues type 3;kg.ha-1;sc;real;3;0 | |
| 497 Nresiduprofil(4);amount of N in organic residues over the profhum depth, derived from residues type 4;kg.ha-1;sc;real;4;0 | |
| 498 Nresiduprofil(5);amount of N in organic residues over the profhum depth, derived from residues type 5;kg.ha-1;sc;real;5;0 | |
| 499 Nresiduprofil(6);amount of N in organic residues over the profhum depth, derived from residues type 6;kg.ha-1;sc;real;6;0 | |
| 500 Nresiduprofil(7);amount of N in organic residues over the profhum depth, derived from residues type 7;kg.ha-1;sc;real;7;0 | |
| 501 Nresiduprofil(8);amount of N in organic residues over the profhum depth, derived from residues type 8;kg.ha-1;sc;real;8;0 | |
| 502 Nresiduprofil(9);amount of N in organic residues over the profhum depth, derived from residues type 9;kg.ha-1;sc;real;9;0 | |
| 503 Nrprof;amount of N in deep organic residues mixed with soil (below the profhum depth);kg.ha-1;sc;real;0;0 | |
| 504 Nrtout;total amount of N in organic residues present over the whole soil profile;kg.ha-1;sc;real;0;0 | |
| 505 Nsurplus;Difference between N inputs and outputs to the soil, including organic fertilizer inputs;kg.ha-1;sc;real;0;0 | |
| 506 Nsurplus_min;Difference between N inputs and outputs to the soil, without organic fertilizer inputs;kg.ha-1;sc;real;0;0 | |
| 507 numcoupe;cut number;SD;p;integer;0;1 | |
| 508 numcult;crop season number;SD;sc;integer;0;0 | |
| 509 Nvolat_from_lev;cumulative amount of N volatilised during the crop cycle( emergence or budbreak-harvest);kg.ha-1;sc;real;0;0 | |
| 510 Nvolat_from_plt;cumulative amount of N volatilised during the crop cycle (planting-harvest);kg.ha-1;sc;real;0;0 | |
| 511 Nvoleng;daily amount of N volatilised from fertiliser;kg.ha-1.d-1;soil;real;0;0 | |
| 512 Nvolorg;daily amount of N volatilised from organic inputs;kg.ha-1.d-1;soil;real;0;0 | |
| 513 offrenod;daily amount of N fixed symbiotically (BNF);kg.ha-1.d-1;p;real;0;2 | |
| 514 p1000grain;1000 grains weight (dry weight);g;p;real;0;1 | |
| 515 pdsfruit(1);weight of fruits in box 1;g.m-2;p;real;1;2 | |
| 516 pdsfruit(2);weight of fruits in box 2;g.m-2;p;real;2;2 | |
| 517 pdsfruit(3);weight of fruits in box 3;g.m-2;p;real;3;2 | |
| 518 pdsfruit(4);weight of fruits in box 4;g.m-2;p;real;4;2 | |
| 519 pdsfruit(5);weight of fruits in box 5;g.m-2;p;real;5;2 | |
| 520 pdsfruit(nboite);weight of fruits in last box;g.m-2;p;real;p%P_nboite;2 | |
| 521 pdsfruit(nboite-1);weight of fruits in last but one box;g.m-2;p;real;p%P_nboite-1;2 | |
| 522 pdsfruitfrais;weight of fresh fruits;g.m-2;p;real;0;2 | |
| 523 penfruit;ratio of fruit envelops to plant biomass;0-1;p;real;0;2 | |
| 524 pfeuil(n);ratio of leaves to plant biomass;0-1;p;real;n;2 | |
| 525 pfeuiljaune;ratio of yellow leaves to plant biomass;0-1;p;real;0;2 | |
| 526 pfeuilverte(n);ratio of green leaves to non-senescent plant biomass;0-1;p;real;n;2 | |
| 527 phoi;photoperiod;hour;c;real;0;0 | |
| 528 pHvol;pH of soil surface as affected by organic residues application (slurry);SD;soil;real;0;0 | |
| 529 pousfruit;number of fruits transferred from one box to the next;SD;p;real;0;2 | |
| 530 poussracmoy;mean reduction factor on the root growth due to soil constraints (option true density);0-1;p;real;0;1 | |
| 531 precip;daily amount of water added to soil (precipitation + irrigation - mulch interception - runoff at the surface);mm.d-1;sc;real;0;0 | |
| 532 precipjN;daily amount of mineral N added to soil due to precipitation;kg.ha-1.d-1;sc;real;0;0 | |
| 533 precipN;cumulative amount of mineral N added to soil due to precipitation;kg.ha-1;sc;real;0;0 | |
| 534 preciprec(n);recalculated daily precipitation;mm.d-1;c;real;n;0 | |
| 535 preserve;proportion of reserve in total plant biomass;0-1;p;real;0;2 | |
| 536 profexteau;average depth of water absorption by plant;cm;p;real;0;1 | |
| 537 profextN;average depth of N absorption by plant;cm;p;real;0;1 | |
| 538 profnappe;depth of water table;cm;soil;real;0;0 | |
| 539 psibase;predawn leaf water potential;MPa;p;real;0;1 | |
| 540 ptigestruc;proportion of structural stems in total plant biomass;0-1;p;real;0;2 | |
| 541 q_irrigations(1);amount of irrigation;mm;sc;real;1;0 | |
| 542 q_irrigations(10);amount of irrigation;mm;sc;real;10;0 | |
| 543 q_irrigations(11);amount of irrigation;mm;sc;real;11;0 | |
| 544 q_irrigations(12);amount of irrigation;mm;sc;real;12;0 | |
| 545 q_irrigations(13);amount of irrigation;mm;sc;real;13;0 | |
| 546 q_irrigations(14);amount of irrigation;mm;sc;real;14;0 | |
| 547 q_irrigations(15);amount of irrigation;mm;sc;real;15;0 | |
| 548 q_irrigations(16);amount of irrigation;mm;sc;real;16;0 | |
| 549 q_irrigations(17);amount of irrigation;mm;sc;real;17;0 | |
| 550 q_irrigations(18);amount of irrigation;mm;sc;real;18;0 | |
| 551 q_irrigations(19);amount of irrigation;mm;sc;real;19;0 | |
| 552 q_irrigations(2);amount of irrigation;mm;sc;real;2;0 | |
| 553 q_irrigations(20);amount of irrigation;mm;sc;real;20;0 | |
| 554 q_irrigations(21);amount of irrigation;mm;sc;real;21;0 | |
| 555 q_irrigations(22);amount of irrigation;mm;sc;real;22;0 | |
| 556 q_irrigations(23);amount of irrigation;mm;sc;real;23;0 | |
| 557 q_irrigations(24);amount of irrigation;mm;sc;real;24;0 | |
| 558 q_irrigations(25);amount of irrigation;mm;sc;real;25;0 | |
| 559 q_irrigations(26);amount of irrigation;mm;sc;real;26;0 | |
| 560 q_irrigations(27);amount of irrigation;mm;sc;real;27;0 | |
| 561 q_irrigations(28);amount of irrigation;mm;sc;real;28;0 | |
| 562 q_irrigations(29);amount of irrigation;mm;sc;real;29;0 | |
| 563 q_irrigations(3);amount of irrigation;mm;sc;real;3;0 | |
| 564 q_irrigations(30);amount of irrigation;mm;sc;real;30;0 | |
| 565 q_irrigations(4);amount of irrigation;mm;sc;real;4;0 | |
| 566 q_irrigations(5);amount of irrigation;mm;sc;real;5;0 | |
| 567 q_irrigations(6);amount of irrigation;mm;sc;real;6;0 | |
| 568 q_irrigations(7);amount of irrigation;mm;sc;real;7;0 | |
| 569 q_irrigations(8);amount of irrigation;mm;sc;real;8;0 | |
| 570 q_irrigations(9);amount of irrigation;mm;sc;real;9;0 | |
| 571 QCapp;cumulative amount of organic C added to soil;kg.ha-1;sc;real;0;0 | |
| 572 QCO2hum;cumulative amount of CO2-C emitted due to mineralisation of humus;kg.ha-1;sc;real;0;0 | |
| 573 QCO2mul;cumulative amount of CO2-C emitted due to mineralisation of residues in the mulch;kg.ha-1;sc;real;0;0 | |
| 574 QCO2res;cumulative amount of CO2-C emitted due to mineralisation of residues (including mulch);kg.ha-1;sc;real;0;0 | |
| 575 QCO2sol;cumulative amount of CO2-C emitted due to heterotrophic respiration (QCO2res + QCO2hum);kg.ha-1;sc;real;0;0 | |
| 576 QCperennemort;cumulative amount of C in dead perennial organs;kg.ha-1;p;real;0;2 | |
| 577 QCperennemort2;cumulative amount of C in dead perennial organs of the two plants;kg.ha-1;sc;real;0;0 | |
| 578 QCplantetombe;cumulative amount of C added to soil by fallen leaves due to senescence;kg.ha-1;p;real;0;2 | |
| 579 QCplantetombe2;cumulative amount of C added to soil by fallen leaves due to senescence for the two plants;kg.ha-1;sc;real;0;0 | |
| 580 QCprimed;cumulative amount of C mineralised by priming effect;kg.ha-1;sc;real;0;0 | |
| 581 QCrac;amount of C in roots;kg.ha-1;p;real;0;0 | |
| 582 QCrac;amount of C in living roots;kg.ha-1;p;real;0;1 | |
| 583 QCracmort;cumulative amount of C added to soil by dead roots;kg.ha-1;p;real;0;1 | |
| 584 QCracmort2;cumulative amount of C added to soil by dead roots of the two plants;kg.ha-1;sc;real;0;1 | |
| 585 QCresorg;cumulative amount of C added to soil through organic exogenous residues;kg.ha-1;sc;real;0;0 | |
| 586 QCressuite;cumulative amount of C added to soil due to aerial residues at harvest;kg.ha-1;p;real;0;1 | |
| 587 QCressuite2;cumulative amount of C added to soil due to aerial residues at harvest for the two plants;kg.ha-1;sc;real;0;1 | |
| 588 QCressuite_tot;cumulative amount of C added to soil by aerial residues from all harvests;t.ha-1;p;real;0;1 | |
| 589 QCressuite_tot2;cumulative amount of C added to soil by aerial residues from all harvests of the two plants;kg.ha-1;sc;real;0;1 | |
| 590 QCrogne;cumulative amount of C added to soil by fallen leaves due to trimming;kg.ha-1;p;real;0;0 | |
| 591 QCrogne2;cumulative amount of C added to soil by fallen leaves due to trimming of the two plants;kg.ha-1;sc;real;0;0 | |
| 592 Qdrain;water flow rate in mole drains;mm.d-1;soil;real;0;0 | |
| 593 Qdraincum;cumulative amount of water flowing in mole drains;mm;soil;real;0;0 | |
| 594 Qem_N2O;cumulative amount of N2O-N emitted from soil;kg.ha-1;sc;real;0;0 | |
| 595 Qem_N2Oden;cumulative amount of N2O-N emitted from soil by denitrification;kg.ha-1;sc;real;0;0 | |
| 596 Qem_N2Onit;cumulative amount of N2O-N emitted from soil by nitrification;kg.ha-1;sc;real;0;0 | |
| 597 qexport;biomass exported out of the field;t.ha-1;p;real;0;0 | |
| 598 Qfix;amount of N fixed symbiotically (BNF) between two cuts;kg.ha-1;p;real;0;2 | |
| 599 Qfixtot;cumulative amount of N fixed symbiotically (BNF);kg.ha-1;p;real;0;2 | |
| 600 Qfixtot2;cumulative amount of N fixed symbiotically (BNF) by the two plants;kg.ha-1;sc;real;0;0 | |
| 601 Qles;cumulative amount of NO3-N leached at the base of the soil profile;kg.ha-1;sc;real;0;0 | |
| 602 Qlesd;cumulative amount of NO3-N leached into mole drains;kg.ha-1;soil;real;0;0 | |
| 603 Qmin;cumulative amount of mineralized N from soil;kg.ha-1;sc;real;0;0 | |
| 604 Qminh;cumulative amount of mineralized N derived from humus decomposition;kg.ha-1;sc;real;0;0 | |
| 605 Qminr;cumulative amount of mineralized N derived from organic residues decomposition;kg.ha-1;sc;real;0;0 | |
| 606 qmulch;biomass of plant mulch;t.ha-1;sc;real;0;0 | |
| 607 QNabso;cumulative N absorbed by the crop (fixation not included);kg.ha-1;p;real;0;2 | |
| 608 QNabso2;cumulative N absorbed by the two crops (fixation not included);kg.ha-1;sc;real;0;0 | |
| 609 QNabsoaer;cumulative N absorbed by the crop and allocated to the aerials;kg.ha-1;p;real;0;2 | |
| 610 QNabsoper;cumulative N absorbed by the crop and allocated to the perennial organs;kg.ha-1;p;real;0;2 | |
| 611 QNabsorac;cumulative N absorbed by the crop and allocated to the roots;kg.ha-1;p;real;0;2 | |
| 612 QNabsotot;cumulative N taken up by the crop, including N fixation ;kg.ha-1;p;real;0;2 | |
| 613 QNapp;cumulative amount of organic N added to soil (straw + roots + fallen leaves + organic fertilisers );kg.ha-1;sc;real;0;0 | |
| 614 QNdenit;cumulative amount of N denitrified during the simulation period;kg.ha-1;soil;real;0;0 | |
| 615 QNdenit_from_lev;cumulative amount of N denitrified during the crop cycle ( emergence or budbreak-harvest);kg.ha-1;sc;real;0;0 | |
| 616 QNdenit_from_plt;cumulative amount of N denitrified during the crop cycle;kg.ha-1;sc;real;0;0 | |
| 617 QNexport;Amount of nitrogen exported at harvest (harvested and removed parts);kg.ha-1;p;real;0;0 | |
| 618 QNexport2;Amount of nitrogen exported at harvest from the two plants;kg.ha-1;sc;real;0;0 | |
| 619 QNfauche;Amount of N exported in each cut;kg.ha-1;p;real;0;0 | |
| 620 QNfauchetot;Cumulative amount of N exported by all cuts;kg.ha-1;p;real;0;0 | |
| 621 QNfauchetot2;Cumulative amount of N exported by all cuts of the two plants;kg.ha-1;sc;real;0;0 | |
| 622 QNfeuille;N content of structural part of the leaves;kg.ha-1;p;real;0;0 | |
| 623 QNgaz;cumulative amount of gaseous N losses (through volatilisation and denitrification) ;kg.ha-1;soil;real;0;0 | |
| 624 QNgrain;amount of N in harvested organs (grains / fruits);kg.ha-1;p;real;0;2 | |
| 625 Qnitrif;cumulative amount of N nitrified in soil (if option nitrification is activated);kg.ha-1;sc;real;0;0 | |
| 626 QNorgeng;cumulative amount of N immobilized from fertiliser;kg.ha-1;soil;real;0;0 | |
| 627 QNperenne;amount of N in perennial organs;kg.ha-1;p;real;0;2 | |
| 628 QNperennemort;cumulative amount of N in dead perennial organs;kg.ha-1;p;real;0;2 | |
| 629 QNperennemort2;cumulative amount of N in dead perennial organs of the two plants;kg.ha-1;sc;real;0;0 | |
| 630 QNplante;amount of N in plants (aerial + perennial organs), without roots;kg.ha-1;p;real;0;0 | |
| 631 QNplante_mx_av_cut;Amount of nitrogen taken up by the plant before cut (for cut crops, for others = QNplante);kg.ha-1;p;real;0;1 | |
| 632 QNplantenp;amount of N in non perennial organs (aerials + roots);kg.ha-1;p;real;n;2 | |
| 633 QNplantetombe;cumulative amount of N added to soil by fallen leaves;kg.ha-1;p;real;0;2 | |
| 634 QNplantetombe2;cumulative amount of N added to soil by fallen leaves of the two plants;kg.ha-1;sc;real;0;0 | |
| 635 QNprimed;cumulative amount of N mineralised by priming effect;kg.ha-1;sc;real;0;0 | |
| 636 QNrac;amount of N in roots;kg.ha-1;p;real;0;1 | |
| 637 QNracmort;cumulative amount of N added to soil by dead roots;kg.ha-1;p;real;0;1 | |
| 638 QNracmort2;cumulative amount of N added to soil by dead roots of the two plants;kg.ha-1;sc;real;0;1 | |
| 639 QNresorg;cumulative amount of organic exogenous N added to soil;kg.ha-1;sc;real;0;0 | |
| 640 QNresperenne;amount of N in perennial reserves;kg.ha-1;p;real;0;2 | |
| 641 QNresperennestruc;amount of N in the structural pool of perennial organs;kg.ha-1;p;real;0;0 | |
| 642 QNressuite;cumulative amount of N added to soil by aerial residues at harvest;kg.ha-1;p;real;0;1 | |
| 643 QNressuite_tot;cumulative amount of N added to soil by aerial residues from all harvests;kg.ha-1;p;real;0;1 | |
| 644 QNressuite_tot2;cumulative amount of N added to soil by aerial residues from all harvests of the two plants;kg.ha-1;sc;real;0;1 | |
| 645 QNressuite2;cumulative amount of N added to soil by aerial residues of the two plants;kg.ha-1;sc;real;0;1 | |
| 646 QNrestemp;amount of N in temporary reserves of vegetative organs that can be remobilised;kg.ha-1;p;real;0;0 | |
| 647 QNrogne;cumulative amount of N added to soil due to trimming;kg.ha-1;p;real;0;1 | |
| 648 QNrogne2;cumulative amount of N added to soil due to trimming of the two plants;kg.ha-1;sc;real;0;1 | |
| 649 QNtige;Structural nitrogen content in stems;kg.ha-1;p;real;0;0 | |
| 650 QNtot;amount of N in whole plant (aerial + root + perennial organs);kg.ha-1;p;real;0;0 | |
| 651 QNtot2;amount of N in whole plant (aerial + root + perennial organs) of the two plants;kg.ha-1;sc;real;0;0 | |
| 652 QNveg;amount of N in vegetative organs;kg.ha-1;p;real;0;0 | |
| 653 QNvegstruc;amount of N in the structural part of vegetative organs;kg.ha-1;p;real;0;0 | |
| 654 QNvoleng;cumulative amount of N volatilised from fertiliser;kg.ha-1;soil;real;0;0 | |
| 655 QNvolorg;cumulative amount of N volatilised from organic inputs;kg.ha-1;soil;real;0;0 | |
| 656 qres_pature;amount of crop residue by pasture applied to the soil (fresh weight);t MF ha-1;sc;real;0;0 | |
| 657 Qressuite;biomass of residues from the previous crop returned to soil at harvest (without fallen leaves);t.ha-1;p;real;0;1 | |
| 658 Qressuite_tot;amount of total harvest residues (aerials + roots);t.ha-1;p;real;0;1 | |
| 659 ra_recal;aerodynamic resistance between the canopy and the reference level zr;s.m-1;sta;real;0;0 | |
| 660 raint;photosynthetic active radiation intercepted by the canopy;MJ.m-2;p;real;0;2 | |
| 661 ras;aerodynamic resistance between the soil and the canopy;s.m-1;sc;real;0;0 | |
| 662 ratioFT;Leaves to stem ratio;SD;p;real;0;0 | |
| 663 Ratm;atmospheric radiation;MJ.m-2;sc;real;0;0 | |
| 664 rc;resistance of canopy;s.m-1;p;real;0;1 | |
| 665 rdif;ratio of diffuse radiation to global radiation;0-1;sc;real;0;0 | |
| 666 remobilj;daily amount of biomass remobilized for growth;kg.ha-1.d-1;p;real;0;2 | |
| 667 remontee;capillary uptake from the base of the soil profile;mm.d-1;soil;real;0;0 | |
| 668 rendementsec;biomass of harvested organs (0% moisture);t.ha-1;p;real;0;1 | |
| 669 resmes;amount of soil water integrated on the measurement depth;mm;sc;real;0;0 | |
| 670 resperenne;biomass of metabolic reserves in the perennial organs;t.ha-1;p;real;0;2 | |
| 671 resrac;soil water reserve in the root zone;mm;p;real;0;1 | |
| 672 restemp;biomass reserves (carbohydrates) in shoots that can be accumulated or mobilized for crop growth;t.ha-1;p;real;0;2 | |
| 673 rfpi;reduction factor on plant development due to photoperiod;0-1;p;real;0;1 | |
| 674 rfvi;reduction factor on plant development due to vernalization;0-1;p;real;0;1 | |
| 675 rlj;rate of root length growth;m.d-1;p;real;0;1 | |
| 676 rltot;total root length (accounting for senescent roots);cm.cm-2;p;real;0;1 | |
| 677 rltotf;total root length (accounting for senescent roots);cm.cm-2;p;real;0;1 | |
| 678 rltotg;total root length (accounting for senescent roots);cm.cm-2;p;real;0;1 | |
| 679 rmaxi;maximum water reserve used;mm;p;real;0;1 | |
| 680 rnet;net radiation;MJ.m-2;sc;real;0;0 | |
| 681 rnetS;net radiation at the soil surface;MJ.m-2;sc;real;0;0 | |
| 682 rombre;fraction of the total radiation in the shade;0-1;p;real;0;1 | |
| 683 rsoleil;fraction of the total radiation in the full sun;0-1;p;real;0;1 | |
| 684 RsurRU;fraction of plant available water over the soil profile;0-1;sc;real;0;0 | |
| 685 RsurRUrac;fraction of plant available water over the root profile;0-1;p;real;0;1 | |
| 686 RU;plant available water content over the soil profile;mm;sc;real;0;0 | |
| 687 ruissel;daily amount of water in total runoff (surface + overflow);mm.d-1;sc;real;0;0 | |
| 688 ruisselsurf;daily amount of water in runoff at soil surface;mm.d-1;sc;real;0;0 | |
| 689 ruisselt;cumulative amount of water in total runoff (surface + overflow);mm;sc;real;0;0 | |
| 690 runoff_from_lev;cumulative amount of water in runoff (surface + overflow) during the crop cycle ( emergence or budbreak-harvest);mm;sc;real;0;0 | |
| 691 runoff_from_plt;cumulative amount of water in runoff (surface + overflow) during the crop cycle (sowing-harvest);mm;sc;real;0;0 | |
| 692 RUrac;maximum plant available water content over the root profile;mm;p;real;0;1 | |
| 693 saturation;amount of water in the soil macroporosity;mm;sc;real;0;0 | |
| 694 Sdepth(n);snow cover depth;m;c;real;n;0 | |
| 695 senfac;reduction factor on leaf life span due to water stress (increasing senescence rate);0-1;p;real;0;2 | |
| 696 sla;specific leaf area;cm2.g-1;p;real;0;2 | |
| 697 SMN;amount of soil mineral N content over the soil profile;kg.ha-1;sc;real;0;0 | |
| 698 SMNmes;amount of soil mineral N content over the depth profmes;kg.ha-1;sc;real;0;0 | |
| 699 Snowaccu(n);daily snowfall accumulation (mm water equivalent);mm.d-1;c;real;n;0 | |
| 700 Snowmelt(n);daily snowmelt (mm water equivalent);mm.d-1;c;real;n;0 | |
| 701 SOC;amount of soil organic C (= Chumt + Cb) over the profhum depth;kg.ha-1;sc;real;0;0 | |
| 702 SOCL(1);amount of soil organic C (= Chumt + Cb) in the layer 1;kg.ha-1;sc;real;0;0 | |
| 703 SOCL(2);amount of soil organic C (= Chumt + Cb) in the layer 2;kg.ha-1;sc;real;0;0 | |
| 704 SOCL(3);amount of soil organic C (= Chumt + Cb) in the layer 3;kg.ha-1;sc;real;0;0 | |
| 705 SOCL(4);amount of soil organic C (= Chumt + Cb) in the layer 4;kg.ha-1;sc;real;0;0 | |
| 706 SOCL(5);amount of soil organic C (= Chumt + Cb) in the layer 5;kg.ha-1;sc;real;0;0 | |
| 707 SOC0;amount of soil organic C (= Chumt + Cb) over the profhum depth at time 0;kg.ha-1;sc;real;0;0 | |
| 708 SOCbalance;Soil organic C balance (inputs-outputs) over the whole soil profile;kg.ha-1;sc;real;0;0 | |
| 709 SOCinputs;Soil organic C inputs to the whole soil profile;kg.ha-1;sc;real;0;0 | |
| 710 SOCtot;amount of soil organic C (all organic pools) over the whole soil profile;kg.ha-1;sc;real;0;0 | |
| 711 SoilAvW;amount of plant available water in soil over the depth profmes;mm;sc;real;0;0 | |
| 712 SoilAvW_by_layers(1);amount of plant available water in soil for layer 1;mm;sc;real;1;0 | |
| 713 SoilAvW_by_layers(2);amount of plant available water in soil for layer 2;mm;sc;real;2;0 | |
| 714 SoilAvW_by_layers(3);amount of plant available water in soil for layer 3;mm;sc;real;3;0 | |
| 715 SoilAvW_by_layers(4);amount of plant available water in soil for layer 4;mm;sc;real;4;0 | |
| 716 SoilAvW_by_layers(5);amount of plant available water in soil for layer 5;mm;sc;real;5;0 | |
| 717 SoilN;amount of mineral N in soil over the depth profmes;kg.ha-1;sc;real;0;0 | |
| 718 SoilNM;amount of NO3-N in soil over the depth profmesN;kg.ha-1;sc;real;0;0 | |
| 719 SoilWatM;amount of plant available water in soil over the depth profmesW;mm;sc;real;0;0 | |
| 720 som_HUR;cumulative water content of the soil microporosity;mm;sc;real;0;0 | |
| 721 som_sat;cumulative amount of water in the soil macroporosity;mm;sc;real;0;0 | |
| 722 somcour;cumulative units of development (upvt) between two stages;degreeC.d;p;real;0;1 | |
| 723 somcourdrp;cumulative units of development (upvt) between two reproductive stages;degreeC.d;p;real;0;1 | |
| 724 somcourfauche;sum of temperature beetwen 2 cuts of forage crop;degreeC.d;p;real;0;1 | |
| 725 somcourmont;cumulative units of development from the start of vernalisation;degreeC.d;p;real;0;1 | |
| 726 somdifftculttair;cumulative temperature difference (tcult-tair) during the simulation period;degreeC;c;real;0;0 | |
| 727 somtemp;sum of temperatures (expressed in Q10 =sum (2.0 ** (udevair ou udevcult / 10.));degreeC.d;p;real;0;1 | |
| 728 somudevair;sum of air temperature (udevair) from sowing to harvest;degreeC;p;real;0;1 | |
| 729 somudevcult;sum of crop temperature (udevcult) from sowing to harvest;degreeC;p;real;0;1 | |
| 730 somupvtsem;sum of development units (upvt) from sowing to harvest;degreeC;p;real;0;1 | |
| 731 SON;amount of soil organic N (= Nhumt + Nb) over the profhum depth;kg.ha-1;sc;real;0;0 | |
| 732 SONL(1);amount of soil organic N (= Nhumt + Nb) in the layer 1;kg.ha-1;sc;real;0;0 | |
| 733 SONL(2);amount of soil organic N (= Nhumt + Nb) in the layer 2;kg.ha-1;sc;real;0;0 | |
| 734 SONL(3);amount of soil organic N (= Nhumt + Nb) in the layer 3;kg.ha-1;sc;real;0;0 | |
| 735 SONL(4);amount of soil organic N (= Nhumt + Nb) in the layer 4;kg.ha-1;sc;real;0;0 | |
| 736 SONL(5);amount of soil organic N (= Nhumt + Nb) in the layer 5;kg.ha-1;sc;real;0;0 | |
| 737 SON0;amount of soil organic N (= Nhumt + Nb) over the profhum depth at time 0;kg.ha-1;sc;real;0;0 | |
| 738 SONbalance;Soil organic N balance (inputs-outputs) over the whole soil profile;kg.ha-1;sc;real;0;0 | |
| 739 SONinputs;Soil organic N inputs to the whole soil profile;kg.ha-1;sc;real;0;0 | |
| 740 SONtot;amount of soil organic N (all organic pools) over the whole soil profile;kg.ha-1;sc;real;0;0 | |
| 741 sourcepuits;source to sink ratio of assimilates in the plant;SD;p;real;0;2 | |
| 742 spfruit;reduction factor on the fruits number due to trophic stress;0-1;p;real;0;2 | |
| 743 splai;source to sink ratio of assimilates in the leaves;SD;p;real;0;2 | |
| 744 stemflow;daily amount of water runoff along the stem;mm.d-1;p;real;0;1 | |
| 745 STN;total soil N (mineral + organic);kg.ha-1;sc;real;0;0 | |
| 746 str1intercoupe;average stomatal water stress index during the vegetative phase (emergence - maximum LAI) of forage crops;0-1;p;real;0;0 | |
| 747 str2intercoupe;average stomatal water stress index during the reproductive phase (maximum LAI - maturity) of forage crops;0-1;p;real;0;0 | |
| 748 stu1intercoupe;average turgescence water stress index during the vegetative phase (emergence - maximum LAI) of forage crops;0-1;p;real;0;0 | |
| 749 stu2intercoupe;average turgescence water stress index during the reproductive phase (maximum LAI - maturity) of forage crops;0-1;p;real;0;0 | |
| 750 sucre;sugar content of harvested organs;0-1;p;real;0;2 | |
| 751 sucre_percent;sugar content of harvested organs;% fresh weight;p;real;0;0 | |
| 752 surf(ao);fraction of the soil surface in the shade;0-1;p;real;ao;0 | |
| 753 surf(as);fraction of the soil surface in the sun;0-1;p;real;as;0 | |
| 754 swfac;stomatic water stress index;0-1;p;real;0;2 | |
| 755 swfac1moy;average stomatic water stress index over the vegetative stage;0-1;p;real;0;1 | |
| 756 swfac2moy;average stomatic water stress index over the reproductive stage;0-1;p;real;0;1 | |
| 757 tairveille;mean air temperature at the previous day;degreeC;sc;real;0;0 | |
| 758 tauxcouv(n);cover rate of the canopy;SD;sc;real;n;0 | |
| 759 tcult;crop surface temperature (daily average);degreeC;sc;real;0;0 | |
| 760 tcult_tairveille;difference between canopy temperature and air temperature;degreeC;sc;real;0;0 | |
| 761 tcultmax;crop surface temperature (daily maximum);degreeC;sc;real;0;0 | |
| 762 tcultmin;crop surface temperature (daily minimum);degreeC;sc;real;0;0 | |
| 763 tempeff;efficient temperature for growth;degreeC;p;real;0;1 | |
| 764 tetp(n);efficient potential evapotranspiration (entered or calculated);mm.d-1;c;real;n;0 | |
| 765 tetstomate;threshold of soil water content limiting transpiration and photosynthesis;% vol;p;real;0;1 | |
| 766 teturg;threshold of soil water content limiting the growth of leaves (in surface area);% vol;p;real;0;1 | |
| 767 tmax(n);maximum active temperature of atmosphere;degreeC;c;real;n;0 | |
| 768 tmaxext(n);maximum temperature of external atmosphere;degreeC;c;real;n;0 | |
| 769 tmaxrec(n);recalculated daily maximum temperature (with presence of a snow cover);degreeC;c;real;n;0 | |
| 770 tmin(n);minimum active temperature of atmosphere;degreeC;c;real;n;0 | |
| 771 tminext(n);minimum temperature of external atmsphere;degreeC;c;real;n;0 | |
| 772 tminrec(n);recalculated daily minimum temperature (with presence of a snow cover);degreeC;c;real;n;0 | |
| 773 tmoy(n);mean active temperature of atmosphere;degreeC;c;real;n;0 | |
| 774 tmoyext(n);mean temperature of external atmosphere;degreeC;c;real;n;0 | |
| 775 tmoyIpltJuin;mean temperature from sowing or planting (iplt stage) until June 30;degreeC;p;real;0;1 | |
| 776 tmoyIpltSept;mean temperature from sowing or planting (iplt stage) until September 30;degreeC;p;real;0;1 | |
| 777 tncultmat;average of minimum crop temperatures (tcultmin) between the stages lax and rec;degreeC;c;real;0;0 | |
| 778 tnhc;cumulative normalized time for the mineralisation of humus;d;sc;real;0;0 | |
| 779 tnrc;cumulative normalized time for the mineralisation of organic residues;d;sc;real;0;0 | |
| 780 totapN;cumulative amount of mineral N added by mineral fertilisers and organic fertilisers;kg.ha-1;sc;real;0;0 | |
| 781 totapNres;cumulative amount of mineral N added by organic fertilisers;kg.ha-1;sc;real;0;0 | |
| 782 totir;cumulative amount of irrigation water;mm;sc;real;0;0 | |
| 783 tpm(n);water vapour pressure in air;hPa;c;real;n;0 | |
| 784 trg(n);active radiation (entered or calculated);MJ.m-2;c;real;n;0 | |
| 785 trgext(n);exterior radiation;MJ.m-2;c;real;n;0 | |
| 786 trr(n);daily rainfall;mm.d-1;c;real;n;0 | |
| 787 TS(1);mean soil temperature (in layer 1);degreeC;sc;real;1;0 | |
| 788 TS(2);mean soil temperature (in layer 2);degreeC;sc;real;2;0 | |
| 789 TS(3);mean soil temperature (in layer 3);degreeC;sc;real;3;0 | |
| 790 TS(4);mean soil temperature (in layer 4);degreeC;sc;real;4;0 | |
| 791 TS(5);mean soil temperature (in layer 5);degreeC;sc;real;5;0 | |
| 792 tsol(10);temperature in the soil at 10 cm ;degrees;sc;real;0;0 | |
| 793 tsol_mean_0_profsem;daily min soil temperature on the layer 1 to sowing depth;d;p;real;0;1 | |
| 794 tsol_mean_ger_lev_0_dpthsow;mean soil temperature on the layer 1 to sowing depth from germination date to emergence;degreeC.d;p;real;0;1 | |
| 795 tsol_mean_plt_ger_0_dpthsow;mean soil temperature on the layer 1 to sowing depth from sowing date to germination ;degreeC.d;p;real;0;1 | |
| 796 tsol_min_0_profsem;daily mean soil temperature on the layer 1 to sowing depth;d;p;real;0;1 | |
| 797 tsol_min_ger_lev_0_dpthsow;min soil temperature on the layer 1 to sowing depth from germination date to emergence;degreeC.d;p;real;0;1 | |
| 798 tsol_min_plt_ger_0_dpthsow;min soil temperature on the layer 1 to sowing depth from sowing date to germination ;degreeC.d;p;real;0;1 | |
| 799 turfac;turgescence water stress index;0-1;p;real;0;2 | |
| 800 turfac1moy;average turgescence water stress index during the vegetative stage;0-1;p;real;0;1 | |
| 801 turfac2moy;average turgescence water stress index during the reproductive stage;0-1;p;real;0;1 | |
| 802 tustress;reduction factor on leaf growth due to the effective water stress (= min(turfac,innlai));0-1;sc;real;0;0 | |
| 803 tvent(n);mean daily wind speed at 2 m high above soil;m.s-1;c;real;n;0 | |
| 804 udevair;effective temperature for crop development, computed with tair;degreeC.d;p;real;0;1 | |
| 805 udevcult;effective temperature for crop development, computed with tcult;degreeC.d;p;real;0;1 | |
| 806 ulai(n);relative development unit for LAI;0-3;p;real;n;0 | |
| 807 upvt(n);development unit;degreeC.d;p;real;n;0 | |
| 808 urac;daily relative development unit for root growth;1-3;p;real;0;1 | |
| 809 vitmoy;mean canopy growth rate;g.m-2.d-1;p;real;0;2 | |
| 810 xmlch1;thickness of the dry layer created by evaporation from the soil and mulch;cm;sc;real;0;0 | |
| 811 zrac;maximum depth reached by root system;cm;p;real;0;1 | |
| 812 zracmax;maximum rooting depth;cm;p;real;0;1 |
