Class: Honeybee::EnergyWindowMaterialGasCustom
- Inherits:
-
ModelObject
- Object
- ModelObject
- Honeybee::EnergyWindowMaterialGasCustom
- Defined in:
- lib/honeybee/material/window_gas_custom.rb,
lib/to_openstudio/material/window_gas_custom.rb,
lib/from_openstudio/material/window_gas_custom.rb
Instance Attribute Summary
Attributes inherited from ModelObject
#errors, #openstudio_object, #warnings
Class Method Summary collapse
Instance Method Summary collapse
- #defaults ⇒ Object
- #find_existing_openstudio_object(openstudio_model) ⇒ Object
- #to_openstudio(openstudio_model) ⇒ Object
Methods inherited from ModelObject
#allowable_types, clean_identifier, clean_name, #initialize, #method_missing, read_from_disk, truncate
Constructor Details
This class inherits a constructor from Honeybee::ModelObject
Dynamic Method Handling
This class handles dynamic methods through the method_missing method in the class Honeybee::ModelObject
Class Method Details
.from_material(material) ⇒ Object
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# File 'lib/from_openstudio/material/window_gas_custom.rb', line 38 def self.from_material(material) # create an empty hash hash = {} hash[:type] = 'EnergyWindowMaterialGasCustom' # set hash values from OpenStudio Object hash[:identifier] = clean_name(material.nameString) unless material.displayName.empty? hash[:display_name] = (material.displayName.get).force_encoding("UTF-8") end hash[:thickness] = material.thickness # check if boost optional object is empty unless material.customConductivityCoefficientA.empty? hash[:conductivity_coeff_a] = material.customConductivityCoefficientA.get end # check if boost optional object is empty unless material.customConductivityCoefficientB.empty? hash[:conductivity_coeff_b] = material.customConductivityCoefficientB.get end # check if boost optional object is empty unless material.customConductivityCoefficientC.empty? hash[:conductivity_coeff_c] = material.customConductivityCoefficientC.get end # check if boost optional object is empty unless material.viscosityCoefficientA.empty? hash[:viscosity_coeff_a] = material.viscosityCoefficientA.get end # check if boost optional object is empty unless material.viscosityCoefficientB.empty? hash[:viscosity_coeff_b] = material.viscosityCoefficientB.get end # check if boost optional object is empty unless material.viscosityCoefficientC.empty? hash[:viscosity_coeff_c] = material.viscosityCoefficientC.get end # check if boost optional object is empty unless material.specificHeatCoefficientA.empty? hash[:specific_heat_coeff_a] = material.specificHeatCoefficientA.get end # check if boost optional object is empty unless material.specificHeatCoefficientB.empty? hash[:specific_heat_coeff_b] = material.specificHeatCoefficientB.get end # check if boost optional object is empty unless material.specificHeatCoefficientC.empty? hash[:specific_heat_coeff_c] = material.specificHeatCoefficientC.get end # check if boost optional object is empty unless material.specificHeatRatio.empty? hash[:specific_heat_ratio] = material.specificHeatRatio.get end # check if boost optional object is empty unless material.molecularWeight.empty? hash[:molecular_weight] = material.molecularWeight.get end hash end |
Instance Method Details
#defaults ⇒ Object
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# File 'lib/honeybee/material/window_gas_custom.rb', line 37 def defaults @@schema[:components][:schemas][:EnergyWindowMaterialGasCustom][:properties] end |
#find_existing_openstudio_object(openstudio_model) ⇒ Object
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# File 'lib/to_openstudio/material/window_gas_custom.rb', line 39 def find_existing_openstudio_object(openstudio_model) object = openstudio_model.getGasByName(@hash[:identifier]) return object.get if object.is_initialized nil end |
#to_openstudio(openstudio_model) ⇒ Object
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# File 'lib/to_openstudio/material/window_gas_custom.rb', line 45 def to_openstudio(openstudio_model) # create window gas openstudio object os_gas_custom = OpenStudio::Model::Gas.new(openstudio_model) os_gas_custom.setName(@hash[:identifier]) unless @hash[:display_name].nil? os_gas_custom.setDisplayName(@hash[:display_name]) end os_gas_custom.setGasType('Custom') os_gas_custom.setConductivityCoefficientA(@hash[:conductivity_coeff_a]) os_gas_custom.setViscosityCoefficientA(@hash[:viscosity_coeff_a]) os_gas_custom.setSpecificHeatCoefficientA(@hash[:specific_heat_coeff_a]) os_gas_custom.setSpecificHeatRatio(@hash[:specific_heat_ratio]) os_gas_custom.setMolecularWeight(@hash[:molecular_weight]) # assign thickness if @hash[:thickness] os_gas_custom.setThickness(@hash[:thickness]) else os_gas_custom.setThickness(defaults[:thickness][:default]) end # assign conductivity coefficient b if @hash[:conductivity_coeff_b] os_gas_custom.setConductivityCoefficientB(@hash[:conductivity_coeff_b]) else os_gas_custom.setConductivityCoefficientB(defaults[:conductivity_coeff_b][:default]) end # assign conductivity coeffient c if @hash[:conductivity_coeff_c] os_gas_custom.setConductivityCoefficientC(@hash[:conductivity_coeff_c]) else os_gas_custom.setConductivityCoefficientC(defaults[:conductivity_coeff_c][:default]) end # assign viscosity coefficient b if @hash[:viscosity_coeff_b] os_gas_custom.setViscosityCoefficientB(@hash[:viscosity_coeff_b]) else os_gas_custom.setViscosityCoefficientB(defaults[:viscosity_coeff_b][:default]) end # assign viscosity coefficient c if @hash[:viscosity_coeff_c] os_gas_custom.setViscosityCoefficientC(@hash[:viscosity_coeff_c]) else os_gas_custom.setViscosityCoefficientC(defaults[:viscosity_coeff_c][:default]) end # assign specific heat coefficient b if @hash[:specific_heat_coeff_b] os_gas_custom.setSpecificHeatCoefficientB(@hash[:specific_heat_coeff_b]) else os_gas_custom.setSpecificHeatCoefficientB(defaults[:specific_heat_coeff_b][:default]) end # assign specific heat coefficient c if @hash[:specific_heat_coeff_c] os_gas_custom.setSpecificHeatCoefficientC(@hash[:specific_heat_coeff_c]) else os_gas_custom.setSpecificHeatCoefficientC(defaults[:specific_heat_coeff_c][:default]) end os_gas_custom end |