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BH.oM.LifeCycleAssessment.MaterialFragments.PhotochemicalOzoneCreationMetric

Photochemical Ozone Formation, measured in kg NMVOC eq, refers to the formation of ozone at the ground level of the troposphere caused by photochemical oxidation of volatile organic compounds (VOCs) and carbon monoxide in the presence of sunlight. This environmental indicator forms part of an Environmental Product Declaration and should be evaluated based on the Quantity Type stated on the Environmental Product Declaration.

Class structure

Implemented interfaces and base types

The PhotochemicalOzoneCreationMetric is inheriting from the following base type(s) and implements the following interfaces:

Properties

Defining properties

The following properties are defined on the class

Name Type Description Quantity
A1 double Photochemical ozone formation relating to the Raw Material Supply module in the Product stage. PhotochemicalOzoneCreationPerQuantity [kg NMVOC eq per unit]
A2 double Photochemical ozone formation relating to the Transport module in the Product stage. PhotochemicalOzoneCreationPerQuantity [kg NMVOC eq per unit]
A3 double Photochemical ozone formation relating to the Manufacturing module in the Product stage. PhotochemicalOzoneCreationPerQuantity [kg NMVOC eq per unit]
A1toA3 double Photochemical ozone formation relating to the full Product stage. PhotochemicalOzoneCreationPerQuantity [kg NMVOC eq per unit]
A4 double Photochemical ozone formation relating to the Transport module in the Construction Process stage. PhotochemicalOzoneCreationPerQuantity [kg NMVOC eq per unit]
A5 double Photochemical ozone formation relating to the Construction Installation Process module in the Construction Process stage. PhotochemicalOzoneCreationPerQuantity [kg NMVOC eq per unit]
B1 double Photochemical ozone formation relating to the Use module in the Use stage. PhotochemicalOzoneCreationPerQuantity [kg NMVOC eq per unit]
B2 double Photochemical ozone formation relating to the Maintenance module in the Use stage. PhotochemicalOzoneCreationPerQuantity [kg NMVOC eq per unit]
B3 double Photochemical ozone formation relating to the Repair module in the Use stage. PhotochemicalOzoneCreationPerQuantity [kg NMVOC eq per unit]
B4 double Photochemical ozone formation relating to the Replacement module in the Use stage. PhotochemicalOzoneCreationPerQuantity [kg NMVOC eq per unit]
B5 double Photochemical ozone formation relating to the Refurbishment module in the Use stage. PhotochemicalOzoneCreationPerQuantity [kg NMVOC eq per unit]
B6 double Photochemical ozone formation relating to the Operational Energy Use module in the Use stage. PhotochemicalOzoneCreationPerQuantity [kg NMVOC eq per unit]
B7 double Photochemical ozone formation relating to the Operational Water Use module in the Use stage. PhotochemicalOzoneCreationPerQuantity [kg NMVOC eq per unit]
B1toB7 double Photochemical ozone formation relating to the full Use Stage. PhotochemicalOzoneCreationPerQuantity [kg NMVOC eq per unit]
C1 double Photochemical ozone formation relating to the De-construction Demolition module in the End of Life stage. PhotochemicalOzoneCreationPerQuantity [kg NMVOC eq per unit]
C2 double Photochemical ozone formation relating to the Transport module in the End of Life stage. PhotochemicalOzoneCreationPerQuantity [kg NMVOC eq per unit]
C3 double Photochemical ozone formation relating to the Waste Processing module in the End of Life stage. PhotochemicalOzoneCreationPerQuantity [kg NMVOC eq per unit]
C4 double Photochemical ozone formation relating to the Disposal module in the End of Life stage. PhotochemicalOzoneCreationPerQuantity [kg NMVOC eq per unit]
C1toC4 double Photochemical ozone formation relating to the full End of Life stage. PhotochemicalOzoneCreationPerQuantity [kg NMVOC eq per unit]
D double Photochemical ozone formation relating to benefits and loads beyond the system boundary. PhotochemicalOzoneCreationPerQuantity [kg NMVOC eq per unit]

Inherited properties

The following properties are inherited from the base class of the object

Name Type Description Quantity
MetricType EnvironmentalMetrics Enum indicating the metric type the object relates to. -
BHoM_Guid Guid - -
Name string - -
Fragments FragmentSet - -
Tags HashSet<string> - -
CustomData Dictionary<string, object> - -

Derived properties

The following properties are defined as extension methods in one of the BHoM_Engines

Name Type Description Quantity Engine
ATotal double Gets the total sum of values from all A-phases (A1-A5) with a set value (all values not NaN). - LifeCycleAssessment_Engine
BTotal double Gets the total sum of values from all B-phases (B1-B7) with a set value (all values not NaN). - LifeCycleAssessment_Engine
CTotal double Gets the total sum of values from all C-phases (C1-C4) with a set value (all values not NaN). - LifeCycleAssessment_Engine
IPhaseDataValues List<double> Gets the values corresponding to the values of all phases as a list of doubles. - LifeCycleAssessment_Engine
Total double Gets the total sum of values from all phases with a set value (all values not NaN). - LifeCycleAssessment_Engine

Code and Schema

C# implementation

C#
public class PhotochemicalOzoneCreationMetric : BH.oM.LifeCycleAssessment.MaterialFragments.EnvironmentalMetric,
BH.oM.Base.BHoMObject,
BH.oM.Base.IBHoMObject,
BH.oM.Base.IObject,
BH.oM.LifeCycleAssessment.ILifeCycleAssessmentPhaseData,
BH.oM.Base.IImmutable

Assembly: LifeCycleAssessment_oM.dll

The C# class definition is available on github:

All history and changes of the class can be found by inspection the history.

JSON Schema implementation

The object is defined as a JSON schema. You can validate a JSON instance against this schema by reference. To do this, use the schema reference below in a validator like this one.

JSON Schema
{
 "$ref" : "https://raw.githubusercontent.com/BHoM/BHoM_JSONSchema/develop/LifeCycleAssessment_oM/MaterialFragments/PhotochemicalOzoneCreationMetric.json"
}

The JSON Schema is available on github here: