net.simplace.client.simulation.lap.sucros.modular.splitting1.Sucros2Crop

Component Variables

Content TypeNameDescriptionData TypeUnitMin ValueMax ValueDefault Value
constantcAMDVSTTable of AMDVS as a function of DVSDOUBLEARRAY--[Ljava.lang.Double;@223967ea
constantcAMTMPTTable of AMTMP as function of DDTMP DOUBLEARRAY--[Ljava.lang.Double;@4a6a6a69
constantcAMXPotential CO 2 assimilation rate at light saturatPotential CO 2 assimilation rate at light saturation for individual leaveson forDOUBLEg m-2 s-1--0.00111
constantcASRQLVAssimilate requirement for leaf dry matter productionDOUBLEg g-1--1.463
constantcASRQRTAssimilate requirement for root dry matter productionDOUBLEg g-1--1.444
constantcASRQSOAssimilate requirement for storage organ dry matter productionDOUBLEg g-1--1.415
constantcASRQSTAssimilate requirement for stem dry matter productionDOUBLEg g-1--1.513
constantcCFLVMass fraction carbon in the leavesDOUBLEg g-1--0.459
constantcCFRTMass fraction carbon in the rootsDOUBLEg g-1--0.467
constantcCFSOMass fraction carbon in the storage organsDOUBLEg g-1--0.471
constantcCFSTMass fraction carbon in the stems DOUBLEg g-1--0.494
constantcCONVLConversion factor for remobilization of stem carbohydrates into glucoseDOUBLE--0.947
constantcCompatibilityModecompatibility mode for GLA calculationBOOLEAN--true
constantcDOYEMlatitudeINTd--90
constantcDVRRTTable of DVR in post-anthesis phase as function of temperatureDOUBLEARRAY--[Ljava.lang.Double;@5d7f1e59
constantcDVRVTTable of DVR in pre-anthesis phase as function of temperatureDOUBLEARRAY--[Ljava.lang.Double;@53e93fb7
constantcEAREar area/weight ratioDOUBLEm2 g-1--6.3E-4
constantcEFFInitial light conversion factor for individual leavesDOUBLEg J-1--1.25E-5
constantcFDVRRfactor phenology post-anthesisDOUBLE--1.0
constantcFDVRVfactor phenology pre-anthesisDOUBLE--1.0
constantcFLVTBTable of FLV as function of DVSDOUBLEARRAY--[Ljava.lang.Double;@3a861417
constantcFRDRParameter to determine rate of increase in RDRDOUBLE--1.0
constantcFRTRLFraction stem weight eventually translocated to storage organsDOUBLE--0.2
constantcFSHTBTable of FSH as function of DVSDOUBLEARRAY--[Ljava.lang.Double;@2326180c
constantcFSOTBTable of FSO as function of DVSDOUBLEARRAY--[Ljava.lang.Double;@68e47e7
constantcFSTTBTable of FST as function of DVSDOUBLEARRAY--[Ljava.lang.Double;@1c00d406
constantcIDVSInitial development stageDOUBLE---0.0
constantcIEAIInitial ear area indexDOUBLEm2 m-2--0.0
constantcILAIInitial leaf area indexDOUBLEm2 m-2--0.012
constantcKDFExtinction coefficient for leavesDOUBLEm2 ha-1--0.6
constantcLAICRCritical leaf area index beyond which death to self-shading occurs DOUBLEm2 m-2--4.0
constantcLATlatitudeDOUBLE°--51.97
constantcMAINLVMaintenance respiration coefficient of leavesDOUBLEg g-1 d-1--0.03
constantcMAINRTMaintenance respiration coefficient of rootsDOUBLEg g-1 d-1--0.015
constantcMAINSOMaintenance respiration coefficient of storage organsDOUBLEg g-1 d-1--0.01
constantcMAINSTMaintenance respiration coefficient of stemsDOUBLEg g-1 d-1--0.015
constantcQ10Factor accounting for increase in maintenance respiration with a 10 °C rise temperatureDOUBLE--2.0
constantcRGRLRelative growth rate of leaf area during exponential growthDOUBLE°C-1 d-1--0.009
constantcSCPScattering coefficient of leaves for PARDOUBLE--0.2
constantcSLASpecific leaf areaDOUBLEm2 g-1--0.022
constantcTBASEBase temperature for juvenile leaf area growthDOUBLE°C--0.0
constantcTREFReference temperatureDOUBLE°C--25.0
constantcWLVDIInitial value for WLVDDOUBLEg m-2--0.0
constantcWLVIInitial dry weight of the leavesDOUBLEg m-2--0.5
constantcWRTIInitial dry weight of the rootsDOUBLEg m-2--0.8
constantcWSOIInitial value for WSODOUBLEg m-2--0.0
constantcWSTIInitial value for WSTDOUBLEg m-2--0.3
inputiActualTranspirationTotal actual transpiration rate of the canopy DOUBLEmm d-1--0.0
inputiPotentialTranspirationPotential transpiration rate derived from Penman evaporationDOUBLEmm d-1--0.0
inputiRDDDaily solar radiationDOUBLEJ m-2 d-1--0.0
inputiTMMNDaily minimum temperature (from AB/TPE weather system)DOUBLE°--0.0
inputiTMMXDaily maximum temperature (from AB/TPE weather system)DOUBLE°--0.0
statesDSLRNumber of days since last rainDOUBLEd--0.0
statesDVSDevelopment stage of the cropDOUBLE---0.0
statesEAIEar area indexDOUBLEm2 m-2--0.0
statesLAILeaf area indexDOUBLEm2 m-2--0.0
statesTAEVAPCumulative actual soil evaporationDOUBLEmm--0.0
statesTAINTCTotal amount of rainfall intercepted by the canopyDOUBLEmm--0.0
statesTATRANTotal amount of water transpired by the cropDOUBLEmm--0.0
statesTDRAINTotal drainageDOUBLEmm--0.0
statesTDTGATotal gross CO 2 assimilation of the cropDOUBLEg m-2--0.0
statesTEVAPDCumulative potential soil evaporation due to drying power of the airDOUBLEmm--0.0
statesTEVAPRCumulative potential soil evaporation due to radiationDOUBLEmm--0.0
statesTNASSTotal net CO 2 assimilationDOUBLEg m-2--0.0
statesTPENMCumulative potential evapotranspirationDOUBLEmm--0.0
statesTPEVAPCumulative potential ecaporatioDOUBLEmm--0.0
statesTPTRANCumulative actual soil evaporationDOUBLEmm--0.0
statesTRAINTotal precipitationDOUBLEmm--0.0
statesTRNOFFTotal runoffDOUBLEmm--0.0
statesWL1Amount of water in soil compartment 1DOUBLEmm--0.0
statesWL2Amount of water in soil compartment 2DOUBLEmm--0.0
statesWL3Amount of water in soil compartment 3DOUBLEmm--0.0
statesWL4Amount of water in soil compartment 4DOUBLEmm--0.0
statesWLVDDry weight of dead leavesDOUBLEg m-2--0.0
statesWLVGDry weight of green leavesDOUBLEg m-2--0.0
statesWRTDry weight of the rootsDOUBLEg m-2--0.0
statesWSODry weight of storage organsDOUBLEg m-2--0.0
statesWSTDry weight of the stemsDOUBLEg m-2--0.0
statesZRTRooted depthDOUBLEmm--0.0
raterDLVDeath rate of leavesDOUBLEg m-2 d-1--0.0
raterDTGADaily total gross CO 2 assimilation of the cropDOUBLEg m-2 d-1--0.0
raterDVRDevelopment rateDOUBLEd-1--0.0
raterGRTDry matter growth rate of rootsDOUBLEg m-2 d-1--0.0
raterGSODry matter growth rate of storage organsDOUBLEg m-2 d-1--0.0
raterGSTDry matter growth rate of stemsDOUBLEg m-2 d-1--0.0
raterREAIGrowth rate ear area indexDOUBLEm2 m-2 d-1--0.0
raterRLAIGrowth rate leaf area indexDOUBLEm2 m-2 d-1--0.0
raterRTNASSnet CO 2 assimilation rateDOUBLEg m-2 d-1--0.0
raterRWLVGGreen leaf growth rateDOUBLEg m-2 d-1--0.0
outCHKDIF Difference between carbon added to the crop since initialization and the net total of integrated carbon fluxes, relative to their sum DOUBLEg m-2--0.0
outCPEWreduction partitioning DOUBLE--0.0
outCROPFCrop factor for crop water requirementDOUBLE--0.0
outDS0Daily extraterrestrial radiationDOUBLEJ m-2 s-1--0.0
outGPHOTassimilation DOUBLEg m-2 d-1--0.0
outHIHarvest indexDOUBLEg g-1--0.0
outPCEWreduction assimilation DOUBLE--0.0
outTADRWTotal above ground biomass DOUBLEg m-2--0.0
outTDRWTotal biomass DOUBLEg m-2--0.0
outTNASSIInitial value of TNASSDOUBLEg m-2--0.0
outWLVWeight of green and dead leavesDOUBLEg m-2--0.0



public class Sucros2Crop extends net.simplace.simulation.model.FWSimComponent {
// Public Constructors
public Sucros2Crop();


// Public Instance Methods
public HashMap createVariables(); // Defines
net.simplace.simulation.model.FWSimComponent


Create the FWSimVariables as interface for this SimComponent
public void initializeVariables();


// Protected Instance Methods
protected void init(); // Defines
net.simplace.simulation.model.FWSimComponent


Initializes the fields by getting input and output FWSimVariables from VarMap
protected void process(); // Defines
net.simplace.simulation.model.FWSimComponent


Process the algorithm and write the results back to VarMap
protected void calculateRates();

protected void integrateStates();

protected FWSimComponent clone(FWSimVarMap aVarMap);
// Defines net.simplace.simulation.model.FWSimComponent


creates a clone from this SimComponent for use in other threads


}



Hierarchy: java.lang.Object - net.simplace.simulation.model.FWSimComponent (net.simplace.simulation.util.FWSimFieldContainer) - Sucros2Crop