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IfcPresentationOrganizationResource.pot
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IfcPresentationOrganizationResource.pot
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# Industry Foundation Classes IFC.
# Copyright (C) 2020 buildingSMART
#
#, fuzzy
msgid ""
msgstr ""
"Project-Id-Version: PACKAGE VERSION\n"
"Report-Msgid-Bugs-To: http://bugs.kde.org\n"
"POT-Creation-Date: 2020-09-25 10:09+0200\n"
"X-Crowdin-SourceKey: msgstr\n"
"Language-Team: buildingSMART community\n"
#:IFC.xml:26582
msgid "IfcLightDistributionCurveEnum"
msgstr "IfcLightDistributionCurveEnum"
msgid "IfcLightDistributionCurveEnum_DEFINITION"
msgstr "There are three kinds of light distribution curves, see Figure 1. NOTE The classification as type A, B, C is according to Standard CEN TC 169, prEN 13032 1, CIE 121 table B Type System C Type System Figure 1 Light distribution curves HISTORY New enumeration in IFC2x2. bSI Documentation"
#:IFC.xml:26588
msgid "IfcLightDistributionData"
msgstr "IfcLightDistributionData"
msgid "IfcLightDistributionData_DEFINITION"
msgstr "[[IfcLightDistributionData]] defines the luminous intensity of a light source given at a particular main plane angle. It is based on some standardized light distribution curves the MainPlaneAngle is either the A angle if the [[IfcLightDistributionCurveEnum]] is set to TYPE A B angle if the [[IfcLightDistributionCurveEnum]] is set to TYPE B C angle if the [[IfcLightDistributionCurveEnum]] is set to TYPE C For each MainPlaneAngle considered as being the row of a table a list of SecondaryPlaneAngle s are given considered to be the columns of a table . They are either the α angle if the [[IfcLightDistributionCurveEnum]] is set to TYPE A β angle if the [[IfcLightDistributionCurveEnum]] is set to TYPE B γ angle if the [[IfcLightDistributionCurveEnum]] is set to TYPE C For each pair of MainPlaneAngle and SecondaryPlaneAngle the LuminousIntensity is provided the unit is given by the [[IfcUnitAssignment]] referring to the LuminousIntensityDistributionUnit, normally cd klm . HISTORY New entity in IFC2x2. bSI Documentation"
#:IFC.xml:26589
msgid "IfcLightDistributionData_MainPlaneAngle"
msgstr "MainPlaneAngle"
msgid "IfcLightDistributionData_MainPlaneAngle_DEFINITION"
msgstr "The main plane angle A, B or C angles, according to the light distribution curve chosen ."
#:IFC.xml:26594
msgid "IfcLightDistributionData_SecondaryPlaneAngle"
msgstr "SecondaryPlaneAngle"
msgid "IfcLightDistributionData_SecondaryPlaneAngle_DEFINITION"
msgstr "The list of secondary plane angles the α, β or γ angles according to the light distribution curve chosen. X 0D X 0D NOTE The SecondaryPlaneAngle and LuminousIntensity lists are corresponding lists."
#:IFC.xml:26599
msgid "IfcLightDistributionData_LuminousIntensity"
msgstr "LuminousIntensity"
msgid "IfcLightDistributionData_LuminousIntensity_DEFINITION"
msgstr "The luminous intensity distribution measure for this pair of main and secondary plane angles according to the light distribution curve chosen."
#:IFC.xml:26617
msgid "IfcLightEmissionSourceEnum"
msgstr "IfcLightEmissionSourceEnum"
msgid "IfcLightEmissionSourceEnum_DEFINITION"
msgstr "[[IfcLightEmissionSourceEnum]] defines the range of different types of light emitter available. HISTORY New type in IFC2x2. bSI Documentation"
#:IFC.xml:26630
msgid "IfcLightIntensityDistribution"
msgstr "IfcLightIntensityDistribution"
msgid "IfcLightIntensityDistribution_DEFINITION"
msgstr "[[IfcLightIntensityDistribution]] defines the the luminous intensity of a light source that changes according to the direction of the ray. It is based on some standardized light distribution curves, which are defined by the LightDistributionCurve attribute. .history New entity in IFC2x2. bSI Documentation"
#:IFC.xml:26605
msgid "IfcLightIntensityDistribution_DistributionData"
msgstr "DistributionData"
msgid "IfcLightIntensityDistribution_DistributionData_DEFINITION"
msgstr "DistributionData"
#:IFC.xml:26631
msgid "IfcLightIntensityDistribution_LightDistributionCurve"
msgstr "LightDistributionCurve"
msgid "IfcLightIntensityDistribution_LightDistributionCurve_DEFINITION"
msgstr "Standardized light distribution curve used to define the luminous intensity of the light in all directions."
#:IFC.xml:26638
msgid "IfcLightSource"
msgstr "IfcLightSource"
msgid "IfcLightSource_DEFINITION"
msgstr ".extDef NOTE Definition according to ISO 10303 46 The light source entity is determined by the reflectance specified in the surface style rendering. Lighting is applied on a surface by surface basis no interactions between surfaces such as shadows or reflections are defined. NOTE Entity adapted from light source defined in ISO 10303 46. NOTE In addition to the attributes as defined in ISO10303 46 the following additional properties from ISO IEC 14772 1 1997 VRML are added ambientIntensity and Intensity . The attribute Name has been added as well as it is not inherited via representation item . HISTORY New entity in IFC2x, renamed and enhanced in IFC2x2. bSI Documentation"
#:IFC.xml:25547
msgid "IfcLightSource_LightColour"
msgstr "LightColour"
msgid "IfcLightSource_LightColour_DEFINITION"
msgstr "LightColour"
#:IFC.xml:26639
msgid "IfcLightSource_Name"
msgstr "Name"
msgid "IfcLightSource_Name_DEFINITION"
msgstr "The name given to the light source in presentation."
#:IFC.xml:26644
msgid "IfcLightSource_AmbientIntensity"
msgstr "AmbientIntensity"
msgid "IfcLightSource_AmbientIntensity_DEFINITION"
msgstr "Definition from VRML97 ISO IEC 14772 1 1997 The ambientIntensity specifies the intensity of the ambient emission from the light. Light intensity may range from 0.0 no light emission to 1.0 full intensity ."
#:IFC.xml:26649
msgid "IfcLightSource_Intensity"
msgstr "Intensity"
msgid "IfcLightSource_Intensity_DEFINITION"
msgstr "Definition from VRML97 ISO IEC 14772 1 1997 The intensity field specifies the brightness of the direct emission from the ligth. Light intensity may range from 0.0 no light emission to 1.0 full intensity ."
#:IFC.xml:26656
msgid "IfcLightSourceAmbient"
msgstr "IfcLightSourceAmbient"
msgid "IfcLightSourceAmbient_DEFINITION"
msgstr ".extDef NOTE Definition according to ISO 10303 46 The light source ambient entity is a subtype of light source. It lights a surface independent of the surface s orientation and position. NOTE Corresponding ISO 10303 entity light source ambient. Please refer to ISO IS 10303 46 1994, p. 31 for the final definition of the formal standard. NOTE In addition to the attributes as defined in ISO 10303 46 the additional property from ISO IEC 14772 1 1997 VRML AmbientIntensity is inherited from the supertype. HISTORY New entity in IFC2x, renamed and enhanced in IFC2x2. bSI Documentation"
#:IFC.xml:26659
msgid "IfcLightSourceDirectional"
msgstr "IfcLightSourceDirectional"
msgid "IfcLightSourceDirectional_DEFINITION"
msgstr ".extDef NOTE Definition according to ISO 10303 46 The light source directional is a subtype of light source. This entity has a light source direction. With a conceptual origin at infinity, all the rays of the light are parallel to this direction. This kind of light source lights a surface based on the surface s orientation, but not position. .extDef NOTE Definition according to ISO IEC 14772 1 1997 The directional light node defines a directional light source that illuminates along rays parallel to a given 3 dimensional vector. Directional light nodes do not attenuate with distance. Directional light nodes are specified in the local coordinate system and are affected by ancestor transformations. NOTE Corresponding ISO 10303 entity light source directional. Please refer to ISO IS 10303 46 1994, p. 32 for the final definition of the formal standard. NOTE In addition to the attributes as defined in ISO 10303 46 the additional property from ISO IEC 14772 1 1997 VRML AmbientIntensity and Intensity are inherited from the supertype. HISTORY New entity in IFC2x, renamed and enhanced in IFC2x2. bSI Documentation"
#:IFC.xml:12457
msgid "IfcLightSourceDirectional_Orientation"
msgstr "Orientation"
msgid "IfcLightSourceDirectional_Orientation_DEFINITION"
msgstr "Orientation"
#:IFC.xml:26662
msgid "IfcLightSourceGoniometric"
msgstr "IfcLightSourceGoniometric"
msgid "IfcLightSourceGoniometric_DEFINITION"
msgstr "[[IfcLightSourceGoniometric]] defines a light source for which exact lighting data is available. It specifies the type of a light emitter, defines the position and orientation of a light distribution curve and the data concerning lamp and photometric information. Figure 1 shows an example of a light emitter having two light sources of type [[IfcLightSourceGoniometric]] . Example .. .. .. .. .. .. figures ifclightsourcegoniometric fig1.gif Figure 1 Light source goniometric HISTORY New entity in IFC2x2. bSI Documentation"
#:IFC.xml:11136
msgid "IfcLightSourceGoniometric_Position"
msgstr "Position"
msgid "IfcLightSourceGoniometric_Position_DEFINITION"
msgstr "Position"
#:IFC.xml:25511
msgid "IfcLightSourceGoniometric_ColourAppearance"
msgstr "ColourAppearance"
msgid "IfcLightSourceGoniometric_ColourAppearance_DEFINITION"
msgstr "ColourAppearance"
#:IFC.xml:26663
msgid "IfcLightSourceGoniometric_ColourTemperature"
msgstr "ColourTemperature"
msgid "IfcLightSourceGoniometric_ColourTemperature_DEFINITION"
msgstr "The color temperature of any source of radiation is defined as the temperature in Kelvin of a black body or Planckian radiator whose radiation has the same chromaticity as the source of radiation. Often the values are only approximate color temperatures as the black body radiator cannot emit radiation of every chromaticity value. The color temperatures of the commonest artificial light sources range from less than 3000K warm white to 4000K intermediate and over 5000K daylight ."
#:IFC.xml:26668
msgid "IfcLightSourceGoniometric_LuminousFlux"
msgstr "LuminousFlux"
msgid "IfcLightSourceGoniometric_LuminousFlux_DEFINITION"
msgstr "Luminous flux is a photometric measure of radiant flux, i.e. the volume of light emitted from a light source. Luminous flux is measured either for the interior as a whole or for a part of the interior partial luminous flux for a solid angle . All other photometric parameters are derivatives of luminous flux. Luminous flux is measured in lumens lm . The luminous flux is given as a nominal value for each lamp."
#:IFC.xml:26673
msgid "IfcLightSourceGoniometric_LightEmissionSource"
msgstr "LightEmissionSource"
msgid "IfcLightSourceGoniometric_LightEmissionSource_DEFINITION"
msgstr "Identifies the types of light emitter from which the type required may be set."
#:IFC.xml:26678
msgid "IfcLightSourceGoniometric_LightDistributionDataSource"
msgstr "LightDistributionDataSource"
msgid "IfcLightSourceGoniometric_LightDistributionDataSource_DEFINITION"
msgstr "The data source from which light distribution data is obtained."
#:IFC.xml:26685
msgid "IfcLightSourcePositional"
msgstr "IfcLightSourcePositional"
msgid "IfcLightSourcePositional_DEFINITION"
msgstr ".extDef NOTE Definition according to ISO 10303 46 The light source positional entity is a subtype of light source. This entity has a light source position and attenuation coefficients. A positional light source affects a surface based on the surface s orientation and position. .extDef NOTE Definition according to ISO IEC 14772 1 1997 The Point light node specifies a point light source at a 3D location in the local coordinate system. A point light source emits light equally in all directions that is, it is omnidirectional. Point light nodes are specified in the local coordinate system and are affected by ancestor transformations. .extDef Point light node s illumination falls off with distance as specified by three attenuation coefficients. The attenuation factor is 1 max attenuation 0 attenuation 1 r attenuation 2 r 2 , 1 , where r is the distance from the light to the surface being illuminated. The default is no attenuation. An attenuation value of 0, 0, 0 is identical to 1, 0, 0 . Attenuation values shall be greater than or equal to zero. NOTE Corresponding ISO 10303 entity light source positional. Please refer to ISO IS 10303 46 1994, p. 32 for the final definition of the formal standard. NOTE In addition to the attributes as defined in ISO10303 46 the additional property from ISO IEC 14772 1 1997 VRML Radius and QuadricAttenuation are added to this subtype and the AmbientIntensity and Intensity are inherited from the supertype. HISTORY New entity in IFC2x, renamed and enhanced in IFC2x2. bSI Documentation"
#:IFC.xml:11583
msgid "IfcLightSourcePositional_Position"
msgstr "Position"
msgid "IfcLightSourcePositional_Position_DEFINITION"
msgstr "Position"
#:IFC.xml:26686
msgid "IfcLightSourcePositional_Radius"
msgstr "Radius"
msgid "IfcLightSourcePositional_Radius_DEFINITION"
msgstr "The maximum distance from the light source for a surface still to be illuminated. X 0D Definition from VRML97 ISO IEC 14772 1 1997 A Point light node illuminates geometry within radius of its location."
#:IFC.xml:26691
msgid "IfcLightSourcePositional_ConstantAttenuation"
msgstr "ConstantAttenuation"
msgid "IfcLightSourcePositional_ConstantAttenuation_DEFINITION"
msgstr "Definition from ISO CD 10303 46 1992 This real indicates the value of the attenuation in the lighting equation that is constant."
#:IFC.xml:26696
msgid "IfcLightSourcePositional_DistanceAttenuation"
msgstr "DistanceAttenuation"
msgid "IfcLightSourcePositional_DistanceAttenuation_DEFINITION"
msgstr "Definition from ISO CD 10303 46 1992 This real indicates the value of the attenuation in the lighting equation that proportional to the distance from the light source."
#:IFC.xml:26701
msgid "IfcLightSourcePositional_QuadricAttenuation"
msgstr "QuadricAttenuation"
msgid "IfcLightSourcePositional_QuadricAttenuation_DEFINITION"
msgstr "This real indicates the value of the attenuation in the lighting equation that proportional to the square value of the distance from the light source."
#:IFC.xml:26708
msgid "IfcLightSourceSpot"
msgstr "IfcLightSourceSpot"
msgid "IfcLightSourceSpot_DEFINITION"
msgstr ".extDef NOTE Definition according to ISO 10303 46 The light source spot entity is a subtype of light source. Spot light source entities have a light source colour, position, direction, attenuation coefficients, concentration exponent, and spread angle. If a point lies outside the cone of influence of a light source of this type as determined by the light source position, direction and spread angle its colour is not affected by that light source. NOTE The [[IfcLightSourceSpot]] adds the BeamWidthAngle which defines the inner cone in which the light source emits light at uniform full intensity. The light source s emission intensity drops off from the inner solid angle BeamWidthAngle to the outer solid angle SpreadAngle . .extDef NOTE Definition according to ISO IEC 14772 1 1997 The Spot light node defines a light source that emits light from a specific point along a specific direction vector and constrained within a solid angle. Spot lights may illuminate geometry nodes that respond to light sources and intersect the solid angle defined by the Spot light. Spot light nodes are specified in the local coordinate system and are affected by ancestors transformations. Figure 1 shows the definition of spot light. spot light .. .. .. .. .. .. figures ifclightsourcespot fig1.gif Figure 1 Light source spot NOTE Corresponding ISO 10303 entity light source spot. Please refer to ISO IS 10303 46 1994, p. 33 for the final definition of the formal standard. NOTE In addition to the attributes as defined in ISO10303 46 the additional property from ISO IEC 14772 1 1997 VRML Radius , BeamWidth , and QuadricAttenuation are added to this subtype and the AmbientIntensity and Intensity are inherited from the supertype. HISTORY New entity in IFC2x, renamed and enhanced in IFC2x2. bSI Documentation"
#:IFC.xml:12397
msgid "IfcLightSourceSpot_Orientation"
msgstr "Orientation"
msgid "IfcLightSourceSpot_Orientation_DEFINITION"
msgstr "Orientation"
#:IFC.xml:26709
msgid "IfcLightSourceSpot_ConcentrationExponent"
msgstr "ConcentrationExponent"
msgid "IfcLightSourceSpot_ConcentrationExponent_DEFINITION"
msgstr "Definition from ISO CD 10303 46 1992 This real is the exponent on the cosine of the angle between the line that starts at the position of the spot light source and is in the direction of the orientation of the spot light source and a line that starts at the position of the spot light source and goes through a point on the surface being shaded. X 0D NOTE This attribute does not exists in ISO IEC 14772 1 1997."
#:IFC.xml:26714
msgid "IfcLightSourceSpot_SpreadAngle"
msgstr "SpreadAngle"
msgid "IfcLightSourceSpot_SpreadAngle_DEFINITION"
msgstr "Definition from ISO CD 10303 46 1992 This planar angle measure is the angle between the line that starts at the position of the spot light source and is in the direction of the spot light source and any line on the boundary of the cone of influence. X 0D Definition from VRML97 ISO IEC 14772 1 1997 The cutOffAngle name of spread angle in VRML field specifies the outer bound of the solid angle. The light source does not emit light outside of this solid angle."
#:IFC.xml:26719
msgid "IfcLightSourceSpot_BeamWidthAngle"
msgstr "BeamWidthAngle"
msgid "IfcLightSourceSpot_BeamWidthAngle_DEFINITION"
msgstr "Definition from VRML97 ISO IEC 14772 1 1997 The beamWidth field specifies an inner solid angle in which the light source emits light at uniform full intensity. The light source s emission intensity drops off from the inner solid angle beamWidthAngle to the outer solid angle spreadAngle ."
#:IFC.xml:26726
msgid "IfcPresentationLayerAssignment"
msgstr "IfcPresentationLayerAssignment"
msgid "IfcPresentationLayerAssignment_DEFINITION"
msgstr "The presentation layer assignment provides the layer name and optionally a description and an identifier for a collection of geometric representation items. The [[IfcPresentationLayerAssignment]] corresponds to the term CAD Layer and is used mainly for grouping and visibility control. NOTE The use of presentation layer shall be restricted to simple grouping and displaying purposes. Visibility and access control and layer style assignment colour, line style, line width is handled by the subtype IfcPresentationLayerAssignmentWithStyle . NOTE Corresponding ISO 10303 name presentation layer assignment. Please refer to ISO IS 10303 46 1994, p. 36 for the final definition of the formal standard. HISTORY New entity in IFC2x2. .use head Attribute use definition Figure 1 illustrates assignment of items by shape representation or representation item. The set of AssignedItems can either include a whole shape representation, or individual geometric representation items. If both, the [[IfcShapeRepresentation]] has a layer assignment, and an individual geometric representation item in the set of [[IfcShapeRepresentation]] .Items, then the layer assignment of the [[IfcGeometricRepresentationItem]] overides the layer assignment of the [[IfcShapeRepresentation]] . instantiation diagram .. .. .. .. .. .. figures ifcpresentationlayerassignment fig1.png Figure 1 Presentation layer assignment bSI Documentation"
#:IFC.xml:26731
msgid "IfcPresentationLayerAssignment_Name"
msgstr "Name"
msgid "IfcPresentationLayerAssignment_Name_DEFINITION"
msgstr "Name of the layer."
#:IFC.xml:26736
msgid "IfcPresentationLayerAssignment_Description"
msgstr "Description"
msgid "IfcPresentationLayerAssignment_Description_DEFINITION"
msgstr "Additional description of the layer."
#:IFC.xml:26741
msgid "IfcPresentationLayerAssignment_AssignedItems"
msgstr "AssignedItems"
msgid "IfcPresentationLayerAssignment_AssignedItems_DEFINITION"
msgstr "The set of layered items, which are assigned to this layer."
#:IFC.xml:26746
msgid "IfcPresentationLayerAssignment_Identifier"
msgstr "Identifier"
msgid "IfcPresentationLayerAssignment_Identifier_DEFINITION"
msgstr "An internal identifier assigned to the layer."
#:IFC.xml:26764
msgid "IfcPresentationLayerWithStyle"
msgstr "IfcPresentationLayerWithStyle"
msgid "IfcPresentationLayerWithStyle_DEFINITION"
msgstr "An IfcPresentationLayerAssignmentWithStyle extends the presentation layer assignment with capabilities to define visibility control, access control and common style information. The visibility control allows to define a layer to be either on or off , and or frozen or not frozen . The access control allows to block graphical entities from manipulations by setting a layer to be either blocked or not blocked . Common style information can be given to the layer. NOTE Style information assigned to layers is often restricted to layer colour , curve font , and or curve width . These styles are assigned by using the [[IfcCurveStyle]] within the LayerStyles . NOTE If a styled item is assigned to a layer using the IfcPresentationLayerAssignmentWithStyle , it inherits the style information from the layer. In this case, it should omit its own style information. If the styled item has style information assigned such as by [[IfcCurveStyle]] , [[IfcFillAreaStyle]] , [[IfcTextStyle]] , [[IfcSurfaceStyle]] , IfcSymbolStyle , then it overrides the style provided by the IfcPresentationLayerAssignmentWithStyle . NOTE The IfcPresentationLayerAssignmentWithStyle extends the presentation layer assignment entity as defined in ISO IS 10303 46 1994, p. 36. HISTORY New entity in IFC2x2. .change ifc2x3 IFC2x3 CHANGE The attributes have been modified without upward compatibility. bSI Documentation"
#:IFC.xml:25935
msgid "IfcPresentationLayerWithStyle_LayerStyles"
msgstr "LayerStyles"
msgid "IfcPresentationLayerWithStyle_LayerStyles_DEFINITION"
msgstr "LayerStyles"
#:IFC.xml:26769
msgid "IfcPresentationLayerWithStyle_LayerOn"
msgstr "LayerOn"
msgid "IfcPresentationLayerWithStyle_LayerOn_DEFINITION"
msgstr "A logical setting, TRUE indicates that the layer is set to On , FALSE that the layer is set to Off , UNKNOWN that such information is not available."
#:IFC.xml:26774
msgid "IfcPresentationLayerWithStyle_LayerFrozen"
msgstr "LayerFrozen"
msgid "IfcPresentationLayerWithStyle_LayerFrozen_DEFINITION"
msgstr "A logical setting, TRUE indicates that the layer is set to Frozen , FALSE that the layer is set to Not frozen , UNKNOWN that such information is not available."
#:IFC.xml:26779
msgid "IfcPresentationLayerWithStyle_LayerBlocked"
msgstr "LayerBlocked"
msgid "IfcPresentationLayerWithStyle_LayerBlocked_DEFINITION"
msgstr "A logical setting, TRUE indicates that the layer is set to Blocked , FALSE that the layer is set to Not blocked , UNKNOWN that such information is not available."
#:IFC.xml:26786
msgid "IfcLayeredItem"
msgstr "IfcLayeredItem"
msgid "IfcLayeredItem_DEFINITION"
msgstr "The [[IfcLayeredItem]] is the collection of all those items, that are assigned to a single layer. These items are representation items or complete representations [[IfcRepresentationItem]], [[IfcRepresentation]] . If an [[IfcRepresentation]] is referenced, all [[IfcRepresentationItem]] within its set of Items are assigned to the same layer. .extDef NOTE Definition according to ISO 10303 46 The layered things type selects those things, which can be grouped in layers. NOTE Corresponding ISO 10303 name layered item. It was called layered things in the ISO CD version and had been renamed to layered item in the ISO IS final version. Please refer to ISO IS 10303 46 1994, p. 13 for the final definition of the formal standard. HISTORY New type in IFC2x2."
#:IFC.xml:26787
msgid "IfcLightDistributionDataSourceSelect"
msgstr "IfcLightDistributionDataSourceSelect"
msgid "IfcLightDistributionDataSourceSelect_DEFINITION"
msgstr "A goniometric light gets its intensity distribution function how much light goes in any one direction from one of two sources i an industry standard file, ii from distribution data passed directly via the [[IfcLightIntensityDistribution]] . The light distribution provides the luminous intensity distribution according to some standardized light distribution curves. SELECT X 09 X 09 X 09 X 09 Type X 09 X 09 Definition X 09 X 09 X 09 X 09 X 09 X 09 [[IfcExternalReference]] X 09 X 09 Light distribution is represented by a standard photometric data file such as Eulumdat, IES, CIBSE TM14. X 09 X 09 X 09 X 09 X 09 X 09 [[IfcLightIntensityDistribution]] X 09 X 09 For representing a light distribution directly the X 09 X 09 X 09 following values needs to be given in a table like structure with column and X 09 X 09 X 09 row headings. These headings should contain the angles C γ or B β X 09 X 09 X 09 and the table body contains the intensity values, normally normalized to X 09 X 09 X 09 cd Klm . The angles can be non equidistant and the angle steps can be almost X 09 X 09 X 09 any value in the valid range, so a list of all available angles in both X 09 X 09 X 09 directions covers all cases. X 09 X 09 X 09 HISTORY New type in IFC2x2."