LCOV - code coverage report
Current view: top level - EnergyPlus/Autosizing - HeatingWaterDesCoilLoadUsedForUASizing.cc (source / functions) Coverage Total Hit
Test: lcov.output.filtered Lines: 88.5 % 87 77
Test Date: 2025-06-02 07:23:51 Functions: 100.0 % 1 1

            Line data    Source code
       1              : // EnergyPlus, Copyright (c) 1996-2025, The Board of Trustees of the University of Illinois,
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       8              : // U.S. Government consequently retains certain rights. As such, the U.S. Government has been
       9              : // granted for itself and others acting on its behalf a paid-up, nonexclusive, irrevocable,
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      14              : // provided that the following conditions are met:
      15              : //
      16              : // (1) Redistributions of source code must retain the above copyright notice, this list of
      17              : //     conditions and the following disclaimer.
      18              : //
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      20              : //     conditions and the following disclaimer in the documentation and/or other materials
      21              : //     provided with the distribution.
      22              : //
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      24              : //     the University of Illinois, U.S. Dept. of Energy nor the names of its contributors may be
      25              : //     used to endorse or promote products derived from this software without specific prior
      26              : //     written permission.
      27              : //
      28              : // (4) Use of EnergyPlus(TM) Name. If Licensee (i) distributes the software in stand-alone form
      29              : //     without changes from the version obtained under this License, or (ii) Licensee makes a
      30              : //     reference solely to the software portion of its product, Licensee must refer to the
      31              : //     software as "EnergyPlus version X" software, where "X" is the version number Licensee
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      41              : // CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
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      46              : // POSSIBILITY OF SUCH DAMAGE.
      47              : 
      48              : // C++ Headers
      49              : #include <cmath>
      50              : 
      51              : // EnergyPlus Headers
      52              : #include <EnergyPlus/Autosizing/HeatingWaterDesCoilLoadUsedForUASizing.hh>
      53              : #include <EnergyPlus/Data/EnergyPlusData.hh>
      54              : #include <EnergyPlus/DataEnvironment.hh>
      55              : #include <EnergyPlus/FluidProperties.hh>
      56              : #include <EnergyPlus/Psychrometrics.hh>
      57              : 
      58              : namespace EnergyPlus {
      59              : 
      60         2414 : Real64 HeatingWaterDesCoilLoadUsedForUASizer::size(EnergyPlusData &state, Real64 _originalValue, bool &errorsFound)
      61              : {
      62         2414 :     if (!this->checkInitialized(state, errorsFound)) {
      63            0 :         return 0.0;
      64              :     }
      65         2414 :     this->preSize(state, _originalValue);
      66              : 
      67         2414 :     if (this->curZoneEqNum > 0) {
      68         1998 :         if (!this->wasAutoSized && !this->sizingDesRunThisZone) {
      69            0 :             this->autoSizedValue = _originalValue;
      70              :         } else {
      71         1998 :             if (this->termUnitSingDuct && (this->curTermUnitSizingNum > 0)) {
      72              :                 Real64 const Cp =
      73         1834 :                     state.dataPlnt->PlantLoop(this->dataWaterLoopNum).glycol->getSpecificHeat(state, Constant::HWInitConvTemp, this->callingRoutine);
      74              :                 Real64 const rho =
      75         1834 :                     state.dataPlnt->PlantLoop(this->dataWaterLoopNum).glycol->getDensity(state, Constant::HWInitConvTemp, this->callingRoutine);
      76         1834 :                 this->autoSizedValue = this->dataWaterFlowUsedForSizing * this->dataWaterCoilSizHeatDeltaT * Cp * rho;
      77         1834 :                 state.dataRptCoilSelection->coilSelectionReportObj->setCoilReheatMultiplier(state, this->compName, this->compType, 1.0);
      78         1998 :             } else if ((this->termUnitPIU || this->termUnitIU) && (this->curTermUnitSizingNum > 0)) {
      79              :                 Real64 const Cp =
      80           60 :                     state.dataPlnt->PlantLoop(this->dataWaterLoopNum).glycol->getSpecificHeat(state, Constant::HWInitConvTemp, this->callingRoutine);
      81              :                 Real64 const rho =
      82           60 :                     state.dataPlnt->PlantLoop(this->dataWaterLoopNum).glycol->getDensity(state, Constant::HWInitConvTemp, this->callingRoutine);
      83          120 :                 this->autoSizedValue = this->dataWaterFlowUsedForSizing * this->dataWaterCoilSizHeatDeltaT * Cp * rho *
      84           60 :                                        this->termUnitSizing(this->curTermUnitSizingNum).ReheatLoadMult;
      85          164 :             } else if (this->zoneEqFanCoil || this->zoneEqUnitHeater) {
      86              :                 Real64 const Cp =
      87           83 :                     state.dataPlnt->PlantLoop(this->dataWaterLoopNum).glycol->getSpecificHeat(state, Constant::HWInitConvTemp, this->callingRoutine);
      88              :                 Real64 const rho =
      89           83 :                     state.dataPlnt->PlantLoop(this->dataWaterLoopNum).glycol->getDensity(state, Constant::HWInitConvTemp, this->callingRoutine);
      90           83 :                 this->autoSizedValue = this->dataWaterFlowUsedForSizing * this->dataWaterCoilSizHeatDeltaT * Cp * rho;
      91           83 :                 state.dataRptCoilSelection->coilSelectionReportObj->setCoilReheatMultiplier(state, this->compName, this->compType, 1.0);
      92           83 :             } else {
      93           21 :                 Real64 DesMassFlow = 0.0;
      94           21 :                 if (this->zoneEqSizing(this->curZoneEqNum).SystemAirFlow) {
      95            0 :                     DesMassFlow = this->zoneEqSizing(this->curZoneEqNum).AirVolFlow * state.dataEnvrn->StdRhoAir;
      96           21 :                 } else if (this->zoneEqSizing(this->curZoneEqNum).HeatingAirFlow) {
      97           12 :                     DesMassFlow = this->zoneEqSizing(this->curZoneEqNum).HeatingAirVolFlow * state.dataEnvrn->StdRhoAir;
      98              :                 } else {
      99            9 :                     DesMassFlow = this->finalZoneSizing(this->curZoneEqNum).DesHeatMassFlow;
     100              :                 }
     101              :                 Real64 const CoilInTemp =
     102           21 :                     this->setHeatCoilInletTempForZoneEqSizing(setOAFracForZoneEqSizing(state, DesMassFlow, this->zoneEqSizing(this->curZoneEqNum)),
     103           21 :                                                               this->zoneEqSizing(this->curZoneEqNum),
     104           21 :                                                               this->finalZoneSizing(this->curZoneEqNum));
     105              :                 // Real64 CoilInHumRat =
     106              :                 //    this->setHeatCoilInletHumRatForZoneEqSizing(setOAFracForZoneEqSizing(DesMassFlow, this->zoneEqSizing(this->curZoneEqNum)),
     107              :                 //                                                this->zoneEqSizing(this->curZoneEqNum),
     108              :                 //                                                this->finalZoneSizing(this->curZoneEqNum));
     109           21 :                 Real64 const CoilOutTemp = this->finalZoneSizing(this->curZoneEqNum).HeatDesTemp;
     110           21 :                 Real64 const CoilOutHumRat = this->finalZoneSizing(this->curZoneEqNum).HeatDesHumRat;
     111           21 :                 this->autoSizedValue = Psychrometrics::PsyCpAirFnW(CoilOutHumRat) * DesMassFlow * (CoilOutTemp - CoilInTemp);
     112              :             }
     113              :         }
     114          416 :     } else if (this->curSysNum > 0) {
     115          416 :         if (!this->wasAutoSized && !this->sizingDesRunThisAirSys) {
     116            0 :             this->autoSizedValue = _originalValue;
     117              :         } else {
     118          416 :             Real64 OutAirFrac = 1.0;
     119          416 :             if (this->curOASysNum > 0) {
     120           31 :                 OutAirFrac = 1.0;
     121          385 :             } else if (this->finalSysSizing(this->curSysNum).HeatOAOption == this->minOA) {
     122          349 :                 if (this->dataAirFlowUsedForSizing > 0.0) {
     123          349 :                     OutAirFrac = this->finalSysSizing(this->curSysNum).DesOutAirVolFlow / this->dataAirFlowUsedForSizing;
     124          349 :                     OutAirFrac = min(1.0, max(0.0, OutAirFrac));
     125              :                 } else {
     126            0 :                     OutAirFrac = 1.0;
     127              :                 }
     128              :             } else {
     129           36 :                 OutAirFrac = 1.0;
     130              :             }
     131          416 :             Real64 CoilInTemp = 0.0;
     132          416 :             if (this->curOASysNum == 0 && this->primaryAirSystem(this->curSysNum).NumOAHeatCoils > 0) {
     133           28 :                 CoilInTemp = OutAirFrac * this->finalSysSizing(this->curSysNum).PreheatTemp +
     134           28 :                              (1.0 - OutAirFrac) * this->finalSysSizing(this->curSysNum).HeatRetTemp;
     135          388 :             } else if (this->curOASysNum > 0 && this->outsideAirSys(this->curOASysNum).AirLoopDOASNum > -1) {
     136            1 :                 CoilInTemp = this->airloopDOAS[this->outsideAirSys(this->curOASysNum).AirLoopDOASNum].HeatOutTemp;
     137              :             } else {
     138          387 :                 CoilInTemp = OutAirFrac * this->finalSysSizing(this->curSysNum).HeatOutTemp +
     139          387 :                              (1.0 - OutAirFrac) * this->finalSysSizing(this->curSysNum).HeatRetTemp;
     140              :             }
     141              :             // coil load
     142          416 :             Real64 const CpAirStd = Psychrometrics::PsyCpAirFnW(0.0);
     143          416 :             if (this->curOASysNum > 0) {
     144           31 :                 if (this->dataDesicRegCoil) {
     145            0 :                     this->autoSizedValue = CpAirStd * state.dataEnvrn->StdRhoAir * this->dataAirFlowUsedForSizing *
     146            0 :                                            (this->dataDesOutletAirTemp - this->dataDesInletAirTemp);
     147           31 :                 } else if (this->outsideAirSys(this->curOASysNum).AirLoopDOASNum > -1) {
     148            1 :                     this->autoSizedValue = CpAirStd * state.dataEnvrn->StdRhoAir * this->dataAirFlowUsedForSizing *
     149            1 :                                            (this->airloopDOAS[this->outsideAirSys(this->curOASysNum).AirLoopDOASNum].PreheatTemp - CoilInTemp);
     150              :                 } else {
     151           30 :                     this->autoSizedValue = CpAirStd * state.dataEnvrn->StdRhoAir * this->dataAirFlowUsedForSizing *
     152           30 :                                            (this->finalSysSizing(this->curSysNum).PreheatTemp - CoilInTemp);
     153              :                 }
     154              :             } else {
     155          385 :                 if (this->finalSysSizing(this->curSysNum).HeatingCapMethod == DataSizing::FractionOfAutosizedHeatingCapacity) {
     156            1 :                     this->dataFracOfAutosizedHeatingCapacity = this->finalSysSizing(this->curSysNum).FractionOfAutosizedHeatingCapacity;
     157              :                 }
     158          385 :                 if (this->dataDesicRegCoil) {
     159            0 :                     this->autoSizedValue = CpAirStd * state.dataEnvrn->StdRhoAir * this->dataAirFlowUsedForSizing *
     160            0 :                                            (this->dataDesOutletAirTemp - this->dataDesInletAirTemp);
     161              :                 } else {
     162          385 :                     this->autoSizedValue = CpAirStd * state.dataEnvrn->StdRhoAir * this->dataAirFlowUsedForSizing *
     163          385 :                                            (this->finalSysSizing(this->curSysNum).HeatSupTemp - CoilInTemp);
     164              :                 }
     165              :             }
     166              :         }
     167              :     }
     168              :     // heating coil can't have negative capacity
     169         2414 :     this->autoSizedValue = std::max(0.0, this->autoSizedValue) * this->dataHeatSizeRatio * this->dataFracOfAutosizedHeatingCapacity;
     170         2414 :     if (this->overrideSizeString) {
     171         2414 :         if (this->isEpJSON) {
     172            0 :             this->sizingString = "water_heating_design_coil_load_for_ua_sizing";
     173              :         }
     174              :     }
     175         2414 :     this->selectSizerOutput(state, errorsFound);
     176         2414 :     if (this->isCoilReportObject && this->curSysNum <= this->numPrimaryAirSys) {
     177         2413 :         Real64 constexpr FanCoolLoad = 0.0;
     178         2413 :         Real64 constexpr TotCapTempModFac = 1.0;
     179         2413 :         Real64 constexpr DXFlowPerCapMinRatio = 1.0;
     180         2413 :         Real64 constexpr DXFlowPerCapMaxRatio = 1.0;
     181         2413 :         state.dataRptCoilSelection->coilSelectionReportObj->setCoilHeatingCapacity(state,
     182         2413 :                                                                                    this->compName,
     183         2413 :                                                                                    this->compType,
     184              :                                                                                    this->autoSizedValue,
     185         2413 :                                                                                    this->wasAutoSized,
     186              :                                                                                    this->curSysNum,
     187              :                                                                                    this->curZoneEqNum,
     188              :                                                                                    this->curOASysNum,
     189              :                                                                                    FanCoolLoad,
     190              :                                                                                    TotCapTempModFac,
     191              :                                                                                    DXFlowPerCapMinRatio,
     192              :                                                                                    DXFlowPerCapMaxRatio);
     193              :     }
     194         2414 :     return this->autoSizedValue;
     195              : }
     196              : 
     197              : } // namespace EnergyPlus
        

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