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//
// This application incorporates Open Design Alliance software pursuant to a license
// agreement with Open Design Alliance.
// Open Design Alliance Copyright (C) 2002-2025 by Open Design Alliance.
// All rights reserved.
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///////////////////////////////////////////////////////////////////////////////
// This file is generated automatically.
#ifndef _IFC2X3_IFCTHERMALMATERIALPROPERTIES_AUTO_IMPL_H
#define _IFC2X3_IFCTHERMALMATERIALPROPERTIES_AUTO_IMPL_H
#include "IfcMaterialPropertiesAutoImpl.h"
#include "TD_PackPush.h"
/** \details
The namespace contains schema-dependent classes, definitions and sub routines
for work with IFC2X3 express schema definitions.
*/
namespace OdIfc2x3 {
/** \details
A container class with material thermal properties defined in IFC specification.
*/
class IFC2X3_EXPORT IfcThermalMaterialProperties : public IfcMaterialProperties
{
//DOM-IGNORE-BEGIN
OD_EXP_DECLARE_MEMBERS(OdIfc2x3::IfcThermalMaterialProperties);
//DOM-IGNORE-END
public:
//
// OdDAI early binding accessors
//
/** \details
Returns the value of SpecificHeatCapacity attribute.
This attribute represents the specific heat of the material: heat energy absorbed per temperature unit. Usually measured in [J/kg K].
\returns
Returns the value of SpecificHeatCapacity attribute.
*/
double getSpecificHeatCapacity() const;
/** \details
Sets the value of SpecificHeatCapacity attribute.
This attribute represents the specific heat of the material: heat energy absorbed per temperature unit. Usually measured in [J/kg K].
\param SpecificHeatCapacity [in] SpecificHeatCapacity attribute to set.
*/
void setSpecificHeatCapacity(double SpecificHeatCapacity);
/** \details
Returns the value of BoilingPoint attribute.
This attribute represents the boiling point of the material (fluid). Usually measured in Kelvin.
\returns
Returns the value of BoilingPoint attribute.
*/
double getBoilingPoint() const;
/** \details
Sets the value of BoilingPoint attribute.
This attribute represents the boiling point of the material (fluid). Usually measured in Kelvin.
\param BoilingPoint [in] BoilingPoint attribute to set.
*/
void setBoilingPoint(double BoilingPoint);
/** \details
Returns the value of FreezingPoint attribute.
This attribute represents the freezing point of the material (fluid). Usually measured in Kelvin.
\returns
Returns the value of FreezingPoint attribute.
*/
double getFreezingPoint() const;
/** \details
Sets the value of FreezingPoint attribute.
This attribute represents the freezing point of the material (fluid). Usually measured in Kelvin.
\param FreezingPoint [in] FreezingPoint attribute to set.
*/
void setFreezingPoint(double FreezingPoint);
/** \details
Returns the value of ThermalConductivity attribute.
This attribute represents the rate at which thermal energy is transmitted through the material. Usually in [W/m K].
\returns
Returns the value of ThermalConductivity attribute.
*/
double getThermalConductivity() const;
/** \details
Sets the value of ThermalConductivity attribute.
This attribute represents the rate at which thermal energy is transmitted through the material. Usually in [W/m K].
\param ThermalConductivity [in] ThermalConductivity attribute to set.
*/
void setThermalConductivity(double ThermalConductivity);
public:
/** \details
Default constructor for the IfcThermalMaterialProperties class.
*/
IfcThermalMaterialProperties();
/** \details
Reads object's data from the specified filer.
\param rdFiler [in] Pointer to a filer from which to read the data.
\returns
A value of OdResult type that contains the result of the method execution.
*/
virtual OdResult inFields(OdDAI::OdSpfFilerBase* rdFiler) override;
/** \details
Writes object's data the the specified filer.
\param wrFiler [in] Pointer to a filer to which to write the data.
\returns
A value of OdResult type that contains the result of the method execution.
*/
virtual OdResult outFields(OdDAI::OdSpfFilerBase* wrFiler) override;
/** \details
Returns a type of a class instance.
\returns
Pointer to the