LCOV - code coverage report
Current view: top level - EnergyPlus/Autosizing - BaseSizerWithScalableInputs.cc (source / functions) Hit Total Coverage
Test: lcov.output.filtered Lines: 56 71 78.9 %
Date: 2023-01-17 19:17:23 Functions: 3 4 75.0 %

          Line data    Source code
       1             : // EnergyPlus, Copyright (c) 1996-2023, The Board of Trustees of the University of Illinois,
       2             : // The Regents of the University of California, through Lawrence Berkeley National Laboratory
       3             : // (subject to receipt of any required approvals from the U.S. Dept. of Energy), Oak Ridge
       4             : // National Laboratory, managed by UT-Battelle, Alliance for Sustainable Energy, LLC, and other
       5             : // contributors. All rights reserved.
       6             : //
       7             : // NOTICE: This Software was developed under funding from the U.S. Department of Energy and the
       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,
      10             : // worldwide license in the Software to reproduce, distribute copies to the public, prepare
      11             : // derivative works, and perform publicly and display publicly, and to permit others to do so.
      12             : //
      13             : // Redistribution and use in source and binary forms, with or without modification, are permitted
      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             : //
      19             : // (2) Redistributions in binary form must reproduce the above copyright notice, this list of
      20             : //     conditions and the following disclaimer in the documentation and/or other materials
      21             : //     provided with the distribution.
      22             : //
      23             : // (3) Neither the name of the University of California, Lawrence Berkeley National Laboratory,
      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
      32             : //     obtained under this License and may not use a different name for the software. Except as
      33             : //     specifically required in this Section (4), Licensee shall not use in a company name, a
      34             : //     product name, in advertising, publicity, or other promotional activities any name, trade
      35             : //     name, trademark, logo, or other designation of "EnergyPlus", "E+", "e+" or confusingly
      36             : //     similar designation, without the U.S. Department of Energy's prior written consent.
      37             : //
      38             : // THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND ANY EXPRESS OR
      39             : // IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY
      40             : // AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR
      41             : // CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
      42             : // CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
      43             : // SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
      44             : // THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR
      45             : // OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
      46             : // POSSIBILITY OF SUCH DAMAGE.
      47             : 
      48             : #include <EnergyPlus/Autosizing/BaseSizerWithFanHeatInputs.hh>
      49             : #include <EnergyPlus/Autosizing/BaseSizerWithScalableInputs.hh>
      50             : #include <EnergyPlus/Data/EnergyPlusData.hh>
      51             : #include <EnergyPlus/DataHeatBalance.hh>
      52             : #include <EnergyPlus/Fans.hh>
      53             : #include <EnergyPlus/HVACFan.hh>
      54             : #include <string>
      55             : 
      56             : namespace EnergyPlus {
      57             : 
      58       18732 : void BaseSizerWithScalableInputs::initializeWithinEP(EnergyPlusData &state,
      59             :                                                      std::string_view const _compType,
      60             :                                                      std::string_view const _compName,
      61             :                                                      bool _printWarningFlag,
      62             :                                                      std::string_view const _callingRoutine)
      63             : {
      64       18732 :     BaseSizerWithFanHeatInputs::initializeWithinEP(state, _compType, _compName, _printWarningFlag, _callingRoutine);
      65             : 
      66       18732 :     this->dataScalableSizingON = state.dataSize->DataScalableSizingON;
      67       18732 :     this->dataScalableCapSizingON = state.dataSize->DataScalableCapSizingON;
      68       18732 :     this->dataHRFlowSizingFlag = state.dataSize->HRFlowSizingFlag;
      69       18732 :     this->zoneCoolingOnlyFan = state.dataSize->ZoneCoolingOnlyFan;
      70       18732 :     this->zoneHeatingOnlyFan = state.dataSize->ZoneHeatingOnlyFan;
      71       18732 :     this->dataFracOfAutosizedCoolingAirflow = state.dataSize->DataFracOfAutosizedCoolingAirflow;
      72       18732 :     this->dataFracOfAutosizedHeatingAirflow = state.dataSize->DataFracOfAutosizedHeatingAirflow;
      73       18732 :     this->dataFlowPerCoolingCapacity = state.dataSize->DataFlowPerCoolingCapacity;
      74       18732 :     this->dataAutosizedCoolingCapacity = state.dataSize->DataAutosizedCoolingCapacity;
      75       18732 :     this->dataFlowPerHeatingCapacity = state.dataSize->DataFlowPerHeatingCapacity;
      76       18732 :     this->dataAutosizedHeatingCapacity = state.dataSize->DataAutosizedHeatingCapacity;
      77             : 
      78       18732 :     this->dataCoilSizingAirInTemp = state.dataSize->DataCoilSizingAirInTemp;
      79       18732 :     this->dataCoilSizingAirInHumRat = state.dataSize->DataCoilSizingAirInHumRat;
      80       18732 :     this->dataCoilSizingAirOutTemp = state.dataSize->DataCoilSizingAirOutTemp;
      81       18732 :     this->dataCoilSizingAirOutHumRat = state.dataSize->DataCoilSizingAirOutHumRat;
      82       18732 :     this->dataCoilSizingFanCoolLoad = state.dataSize->DataCoilSizingFanCoolLoad;
      83       18732 :     this->dataCoilSizingCapFT = state.dataSize->DataCoilSizingCapFT;
      84       18732 :     this->dataTotCapCurveIndex = state.dataSize->DataTotCapCurveIndex;
      85       18732 :     this->dataTotCapCurveValue = state.dataSize->DataTotCapCurveValue;
      86       18732 :     this->dataFracOfAutosizedCoolingCapacity = state.dataSize->DataFracOfAutosizedCoolingCapacity;
      87       18732 :     this->dataFracOfAutosizedHeatingCapacity = state.dataSize->DataFracOfAutosizedHeatingCapacity;
      88       18732 :     this->dataCoolCoilCap = state.dataSize->DataCoolCoilCap;
      89       18732 :     this->dataCoilIsSuppHeater = state.dataSize->DataCoilIsSuppHeater;
      90       18732 :     this->suppHeatCap = state.dataSize->SuppHeatCap;
      91       18732 :     this->unitaryHeatCap = state.dataSize->UnitaryHeatCap;
      92       18732 :     this->dataCoolCoilType = state.dataSize->DataCoolCoilType;
      93       18732 :     this->dataCoolCoilIndex = state.dataSize->DataCoolCoilIndex;
      94             : 
      95       18732 :     this->zoneHVACSizing = state.dataSize->ZoneHVACSizing;
      96             : 
      97             :     // set supply air fan properties
      98       23946 :     if (this->isCoilReportObject && this->curSysNum > 0 && int(this->primaryAirSystem.size()) > 0 &&
      99        5214 :         this->curSysNum <= state.dataHVACGlobal->NumPrimaryAirSys) {
     100        5207 :         int SupFanNum = this->primaryAirSystem(this->curSysNum).SupFanNum;
     101             :         // int RetFanNum = this->primaryAirSystem(this->curSysNum).RetFanNum;
     102        5207 :         switch (this->primaryAirSystem(this->curSysNum).supFanModelType) {
     103        4814 :         case DataAirSystems::StructArrayLegacyFanModels: {
     104        4814 :             if (SupFanNum > 0) {
     105       14442 :                 state.dataRptCoilSelection->coilSelectionReportObj->setCoilSupplyFanInfo(state,
     106             :                                                                                          this->compName,
     107             :                                                                                          this->compType,
     108        4814 :                                                                                          state.dataFans->Fan(SupFanNum).FanName,
     109             :                                                                                          DataAirSystems::StructArrayLegacyFanModels,
     110        4814 :                                                                                          this->primaryAirSystem(this->curSysNum).SupFanNum);
     111             :             }
     112        4814 :             break;
     113             :         }
     114         379 :         case DataAirSystems::ObjectVectorOOFanSystemModel: {
     115         379 :             if (this->primaryAirSystem(this->curSysNum).supFanVecIndex >= 0) {
     116        1137 :                 state.dataRptCoilSelection->coilSelectionReportObj->setCoilSupplyFanInfo(
     117             :                     state,
     118             :                     this->compName,
     119             :                     this->compType,
     120         379 :                     state.dataHVACFan->fanObjs[this->primaryAirSystem(this->curSysNum).supFanVecIndex]->name,
     121             :                     DataAirSystems::ObjectVectorOOFanSystemModel,
     122         379 :                     this->primaryAirSystem(this->curSysNum).supFanVecIndex);
     123             :             }
     124         379 :             break;
     125             :         }
     126          14 :         default:
     127             :             // do nothing
     128          14 :             break;
     129             :         } // end switch
     130             :     }
     131             : 
     132       18732 :     if (this->curZoneEqNum) {
     133        9660 :         if (this->zoneHVACSizingIndex > 0) {
     134           0 :             int coolingSAFMethod = this->zoneHVACSizing(this->zoneHVACSizingIndex).CoolingSAFMethod;
     135           0 :             this->zoneAirFlowSizMethod = coolingSAFMethod;
     136           0 :             this->dataFractionUsedForSizing = 1.0;
     137           0 :             this->dataConstantUsedForSizing = this->zoneHVACSizing(this->zoneHVACSizingIndex).MaxCoolAirVolFlow;
     138           0 :             if (coolingSAFMethod == DataSizing::FlowPerFloorArea) {
     139           0 :                 state.dataSize->DataScalableSizingON = true;
     140           0 :                 this->dataConstantUsedForSizing = this->zoneHVACSizing(this->zoneHVACSizingIndex).MaxCoolAirVolFlow *
     141           0 :                                                   state.dataHeatBal->Zone(state.dataSize->DataZoneNumber).FloorArea;
     142           0 :             } else if (coolingSAFMethod == DataSizing::FractionOfAutosizedCoolingAirflow) {
     143           0 :                 state.dataSize->DataFracOfAutosizedCoolingAirflow = this->zoneHVACSizing(this->zoneHVACSizingIndex).MaxCoolAirVolFlow;
     144           0 :                 state.dataSize->DataScalableSizingON = true;
     145             :             }
     146             :         } else {
     147        9660 :             if (int(this->zoneEqSizing.size()) > 0 && int(this->zoneEqSizing(this->curZoneEqNum).SizingMethod.size()) > 0) {
     148        9660 :                 this->zoneAirFlowSizMethod = this->zoneEqSizing(this->curZoneEqNum).SizingMethod(int(this->sizingType));
     149             :             } else {
     150           0 :                 this->zoneAirFlowSizMethod = 0;
     151             :             }
     152        9660 :             if (this->zoneAirFlowSizMethod == 0) {
     153             :                 // do nothing, sizing method not set
     154         259 :             } else if (this->zoneAirFlowSizMethod == DataSizing::SupplyAirFlowRate || this->zoneAirFlowSizMethod == DataSizing::None) {
     155             :             }
     156             :         }
     157             :     }
     158       18732 : }
     159             : 
     160           0 : void BaseSizerWithScalableInputs::setHVACSizingIndexData(int const index)
     161             : {
     162           0 :     this->zoneHVACSizingIndex = index;
     163           0 : }
     164             : 
     165        2313 : } // namespace EnergyPlus

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