1#ifndef HEAT_CAPACITY_VARIABLE_CUSTOM_POLYNOMIAL_H
2#define HEAT_CAPACITY_VARIABLE_CUSTOM_POLYNOMIAL_H
4#define HEAT_CAPACITY_VARIABLE_CUSTOM_POLYNOMIAL_VERSION "1"
11#include "../../src/GenericSubmodule.h"
12#include "../../src/ModuleFactory.h"
38 static bool m_registered;
39 std::string m_ini_filepath{
"heat_capacity/HeatCapacityVariableCustomPolynomial.ini"};
50 bool exec(std::string_view param)
override;
55 bool output()
override {
return true; };
59 void setFieldPtr(std::shared_ptr<std::valarray<T>> field_ptr)
override
66 return std::make_shared<HeatCapacityVariableCustomPolynomial<T>>(
sim);
68 static std::string
getName() {
return "HeatCapacityVariableCustomPolynomial"; }
71 return "HeatCapacityVariableCustomPolynomial";
88 std::string ini_folder_path{
95 std::cerr <<
"[HeatCapacityVariableCustomPolynomial]: " << e.
what() <<
'\n';
96 throw BadInput(
static_cast<std::string
>(
"[HeatCapacityVariableCustomPolynomial]: ")
97 +
static_cast<std::string
>(e.
what()));
107 m_coefficient_A = this->ini_file_data.getDoubleParameters(
"coefficient_A");
108 m_coefficient_B = this->ini_file_data.getDoubleParameters(
"coefficient_B");
109 m_coefficient_C = this->ini_file_data.getDoubleParameters(
"coefficient_C");
110 m_coefficient_D = this->ini_file_data.getDoubleParameters(
"coefficient_D");
114 std::cerr <<
"[HeatCapacityVariableCustomPolynomial]: " << e.
what() <<
'\n';
115 throw BadInput(
static_cast<std::string
>(
"[HeatCapacityVariableCustomPolynomial]: ")
116 +
static_cast<std::string
>(e.
what()));
124 if (param ==
"InitChain")
128 if (param ==
"PreTimeStepChain")
130 return preTimeStep();
132 if (param ==
"PostTimeStepChain")
134 return postTimeStep();
136 if (param ==
"OutputChain")
146 const std::valarray<T>& temperature{this->sim->getField(
"Temperature")};
147 for (
int i = 0; i < temperature.size(); ++i)
149 (*this->module_field)[i] = m_coefficient_A + m_coefficient_B * temperature[i]
150 + m_coefficient_C * std::pow(temperature[i], 2.)
151 + m_coefficient_D * std::pow(temperature[i], 3.);
158 calculateHeatCapacity();
165 calculateHeatCapacity();
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
Submodule that provides a user-supplied constant heat capacity.
Definition HeatCapacityVariableCustomPolynomial.h:36
static std::shared_ptr< GenericSubmodule< T > > createMethode(SimulationClassBase< T > *sim)
Definition HeatCapacityVariableCustomPolynomial.h:64
bool postTimeStep() override
Definition HeatCapacityVariableCustomPolynomial.h:54
bool setup(std::vector< std::shared_ptr< GenericSubmodule< T > > > all_submodules) override
Definition HeatCapacityVariableCustomPolynomial.h:102
void setFieldPtr(std::shared_ptr< std::valarray< T > > field_ptr) override
Definition HeatCapacityVariableCustomPolynomial.h:59
bool preTimeStep() override
Definition HeatCapacityVariableCustomPolynomial.h:156
static std::string getName()
Definition HeatCapacityVariableCustomPolynomial.h:68
HeatCapacityVariableCustomPolynomial(SimulationClassBase< T > *sim)
Definition HeatCapacityVariableCustomPolynomial.h:82
std::string_view getNameLocal() const override
Definition HeatCapacityVariableCustomPolynomial.h:69
std::vector< std::string > getDependencies() const override
Definition HeatCapacityVariableCustomPolynomial.h:73
bool output() override
Definition HeatCapacityVariableCustomPolynomial.h:55
bool exec(std::string_view param) override
Definition HeatCapacityVariableCustomPolynomial.h:122
bool init() override
Definition HeatCapacityVariableCustomPolynomial.h:163
void calculateHeatCapacity()
Definition HeatCapacityVariableCustomPolynomial.h:144
static constexpr bool registerModule(std::string name, creation_method module) noexcept
Function that adds a module to the module registry map.
Definition ModuleFactory.h:76
Definition SimulationClassBase.h:19
InputManager m_simulation_config
Definition SimulationClassBase.h:29