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1 : // EnergyPlus, Copyright (c) 1996-2023, The Board of Trustees of the University of Illinois,
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47 :
48 : #ifndef DataMoistureBalance_hh_INCLUDED
49 : #define DataMoistureBalance_hh_INCLUDED
50 :
51 : // ObjexxFCL Headers
52 : #include <ObjexxFCL/Array1D.hh>
53 : #include <ObjexxFCL/Array2D.hh>
54 : #include <ObjexxFCL/Array3D.hh>
55 : #include <ObjexxFCL/Array4D.hh>
56 : #include <ObjexxFCL/Array5D.hh>
57 :
58 : // EnergyPlus Headers
59 : #include <EnergyPlus/Data/BaseData.hh>
60 : #include <EnergyPlus/EnergyPlus.hh>
61 :
62 : namespace EnergyPlus {
63 :
64 1542 : struct MoistureBalanceData : BaseGlobalStruct
65 : {
66 : // This is more or less the traditional value from BLAST.
67 : // static constexpr Real64 Lam = 2500000.0; // heat of adsorption for building materials
68 : // Public Variables that will also be used in the Moisture Surface Balance
69 : Array3D<Real64> FluxH; // transfer function coeff for calculating the CPF Flux history term
70 : Array5D<Real64> IcoefH; // transfer function coeff for calculating the CPF history term
71 : Array4D<Real64> Icoef; // transfer function coeff for calculating the CPF history term
72 : Array2D<Real64> DiffC; // Thermal Diffusivity in combined potential formulation (CPF)
73 : // for each equation
74 : Array2D<Real64> mtinc; // # of Moisture transfer function time increment for each equation
75 : Array1D<Real64> S1; // Thermal Diffusivity in combined potential formulation (CPF)
76 : // for each equation
77 : Array1D<Real64> R2; // Thermal Diffusivity in combined potential formulation (CPF)
78 : // for each equation
79 : Array1D<Real64> TempOutsideAirFD; // Temperature outside air for the FD surface
80 :
81 : Array2D_int mhstry; // # of FD History terms for each equation
82 : Array1D_int CMTF; // Type of material layer
83 : Array2D_int Nmrf; // # of Moisture Response Factors for CPF Solution
84 :
85 : // variables used for MTF moisture implementation
86 : Array1D<Real64> RhoVaporAirOut; // Vapor Density outside surface
87 : Array1D<Real64> RhoVaporAirIn; // Vapor Density inside surface
88 : Array1D<Real64> HConvExtFD; // thermal convection coefficient outside surface
89 : Array1D<Real64> HMassConvExtFD; // mass convection coefficient outside surface
90 : Array1D<Real64> HConvInFD; // thermal convection coefficient inside surface
91 : Array1D<Real64> HMassConvInFD; // mass convection coefficient inside surface
92 : Array1D<Real64> RhoVaporSurfIn; // Vapor Density inside surface
93 : Array1D<Real64> HSkyFD; // Sky Convection Coefficient
94 : Array1D<Real64> HGrndFD; // Ground Convection Coefficient
95 : Array1D<Real64> HAirFD; // Air Convection Coefficient
96 0 : void clear_state() override
97 : {
98 0 : *this = MoistureBalanceData();
99 0 : }
100 : };
101 :
102 : } // namespace EnergyPlus
103 :
104 : #endif
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