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HeatConductivityVariableKiradjiev2019PorousRockSolidRadiation.h
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1#ifndef HEAT_CONDUCTIVITY_VARIABLE_KIRADJIEV_2019_POROUS_ROCK_SOLID_RADIATION_H
2#define HEAT_CONDUCTIVITY_VARIABLE_KIRADJIEV_2019_POROUS_ROCK_SOLID_RADIATION_H
3
4#define VERSION "1"
5
6#include <iostream>
7#include <memory>
8#include <numbers>
9#include <string>
10#include <valarray>
11
12#include "../../src/GenericSubmodule.h"
13#include "../../src/ModuleFactory.h"
14
34template <typename T>
36{
37 private:
38 static bool m_registered;
39 std::string m_ini_filepath{
40 "heat_conductivity/HeatConductivityVariableKiradjiev2019PorousRockSolidRadiation.ini"};
41 T m_porosity{};
42 T m_pore_space_diameter{};
43 T m_emissivity{};
44 T m_stefan_boltzmann_const{};
45 std::valarray<T> m_radiative_heat_conductivity;
46
47 public:
49 bool setup(std::vector<std::shared_ptr<GenericSubmodule<T>>> all_submodules)
50 override; // loads module into necessary module chains (auto load for calculation
51 // chains)
52 bool exec(std::string_view param) override; // main functionality of the module
53
54 bool init() override;
55 bool preTimeStep() override;
56 bool postTimeStep() override { return true; };
57 bool output() override { return true; };
58
61
62 void setFieldPtr(std::shared_ptr<std::valarray<T>> field_ptr) override
63 {
64 this->module_field = field_ptr;
65 }
66
67 static std::shared_ptr<GenericSubmodule<T>> createMethode(SimulationClassBase<T>* sim)
68 {
69 return std::make_shared<
71 }
72 static std::string getName()
73 {
74 return "HeatConductivityVariableKiradjiev2019PorousRockSolidRadiation";
75 }
76 std::string_view getNameLocal() const override
77 {
78 return "HeatConductivityVariableKiradjiev2019PorousRockSolidRadiation";
79 };
80 std::vector<std::string> getDependencies() const override
81 {
82 return this->ini_file_data.getStringVectorParameters("dependencies");
83 };
84};
85
86// ================= Implementation =================
87
88template <typename T>
91 : GenericSubmodule<T>(sim)
92{
93 try
94 {
95 std::string ini_folder_path{
96 this->sim->m_simulation_config.getStringParameters("ini_folder_path")};
97 this->ini_file_data.loadUserInput(ini_folder_path + m_ini_filepath);
99 }
100 catch (const BadInput& e)
101 {
102 std::cerr << e.what() << '\n';
103 }
104}
105
106template <typename T>
108 std::vector<std::shared_ptr<GenericSubmodule<T>>> all_submodules)
109{
110 this->setSubmodules(all_submodules);
111
112 m_porosity = this->ini_file_data.getDoubleParameters("porosity");
113 m_pore_space_diameter = this->ini_file_data.getDoubleParameters("pore_space_diameter");
114 m_stefan_boltzmann_const = this->ini_file_data.getDoubleParameters("stefan_boltzmann_const");
115
116 m_radiative_heat_conductivity.resize(
117 this->sim->m_simulation_config.getIntParameters("numerical_layers")
118 * this->sim->m_simulation_config.getIntParameters("number_of_facets"));
119
120 return true;
121}
122
123template <typename T>
125{
126 if (param == "InitChain")
127 {
128 return init();
129 }
130 if (param == "PreTimeStepChain")
131 {
132 return preTimeStep();
133 }
134 if (param == "PostTimeStepChain")
135 {
136 return postTimeStep();
137 }
138 if (param == "OutputChain")
139 {
140 return output();
141 }
142 return false;
143}
144
150template <typename T>
152 T>::calculateRadiativeHeatConductivity()
153{
154 const std::valarray<T>& temperature{this->sim->getField("Temperature")};
155 m_emissivity = this->sim->getField("Emissivity")[0];
156 for (int i = 0; i < temperature.size(); ++i)
157 {
158 m_radiative_heat_conductivity[i] = 2 * m_emissivity * m_stefan_boltzmann_const
159 * m_pore_space_diameter * std::pow(temperature[i], 3.);
160 }
161}
162
168template <typename T>
170{
171 this->sub_module_chain.runChain("PreTimeStepChain"); // Solid heat conductivity
172 this->calculateRadiativeHeatConductivity();
173 for (int i = 0; i < m_radiative_heat_conductivity.size(); ++i)
174 {
175 (*this->module_field)[i] =
176 (2 * (*this->module_field)[i] + m_radiative_heat_conductivity[i]
177 + 2 * m_porosity * (m_radiative_heat_conductivity[i] - (*this->module_field)[i]))
178 / (2 * (*this->module_field)[i] + m_radiative_heat_conductivity[i]
179 - m_porosity * (m_radiative_heat_conductivity[i] - (*this->module_field)[i]))
180 * (*this->module_field)[i];
181 }
182}
183
184template <typename T>
186{
187 calculateHeatConductivity();
188 return true;
189}
190
191template <typename T>
193{
194 calculateHeatConductivity();
195 return true;
196}
197
198template <typename T>
200 ModuleFactory<T>::registerModule(getName(), createMethode);
201
202#endif // HEAT_CONDUCTIVITY_CONSTANT_MAXWELL_1873_POROUS_ROCK_SOLID_H
This error class inherits from std::exception and marks faulty parameter or CL inputs....
Definition IniParser.h:71
const char * what() const noexcept override
Definition IniParser.h:78
Abstract base class for the submodules. Submodules are below managing modules and will only be run by...
Definition GenericSubmodule.h:25
InputManager ini_file_data
Definition GenericSubmodule.h:36
std::vector< std::string > m_generic_submodules
Definition GenericSubmodule.h:34
const SimulationClassBase< T > * sim
Definition GenericSubmodule.h:32
std::shared_ptr< std::valarray< T > > module_field
Definition GenericSubmodule.h:29
Definition HeatConductivityVariableKiradjiev2019PorousRockSolidRadiation.h:36
bool setup(std::vector< std::shared_ptr< GenericSubmodule< T > > > all_submodules) override
Definition HeatConductivityVariableKiradjiev2019PorousRockSolidRadiation.h:107
bool postTimeStep() override
Definition HeatConductivityVariableKiradjiev2019PorousRockSolidRadiation.h:56
void setFieldPtr(std::shared_ptr< std::valarray< T > > field_ptr) override
Definition HeatConductivityVariableKiradjiev2019PorousRockSolidRadiation.h:62
static std::shared_ptr< GenericSubmodule< T > > createMethode(SimulationClassBase< T > *sim)
Definition HeatConductivityVariableKiradjiev2019PorousRockSolidRadiation.h:67
static std::string getName()
Definition HeatConductivityVariableKiradjiev2019PorousRockSolidRadiation.h:72
void calculateRadiativeHeatConductivity()
Calculate effective radiative heat conductivity following Kiradjiev et al. (2019).
Definition HeatConductivityVariableKiradjiev2019PorousRockSolidRadiation.h:152
bool init() override
Definition HeatConductivityVariableKiradjiev2019PorousRockSolidRadiation.h:192
void calculateHeatConductivity()
Heat conductivity formulation from Maxwell 1873.
Definition HeatConductivityVariableKiradjiev2019PorousRockSolidRadiation.h:169
bool exec(std::string_view param) override
Definition HeatConductivityVariableKiradjiev2019PorousRockSolidRadiation.h:124
bool output() override
Definition HeatConductivityVariableKiradjiev2019PorousRockSolidRadiation.h:57
std::string_view getNameLocal() const override
Definition HeatConductivityVariableKiradjiev2019PorousRockSolidRadiation.h:76
std::vector< std::string > getDependencies() const override
Definition HeatConductivityVariableKiradjiev2019PorousRockSolidRadiation.h:80
bool preTimeStep() override
Definition HeatConductivityVariableKiradjiev2019PorousRockSolidRadiation.h:185
std::vector< std::string > getStringVectorParameters(const std::string &key) const
Definition InputManager.cpp:503
void loadUserInput(const std::string &user_ini_file_path)
Public function to load and merge user supplied ini files with the already stored data.
Definition InputManager.cpp:42
std::string getStringParameters(const std::string &key) const
Getter function to access the m_parameters map and returns a string. Throws a BadInput error,...
Definition InputManager.cpp:493
static constexpr bool registerModule(std::string name, creation_method module) noexcept
Function that adds a module to the module registry map.
Definition ModuleFactory.h:75
Definition SimulationClassBase.h:19
InputManager m_simulation_config
Definition SimulationClassBase.h:29