282 lines
6.9 KiB
TOML
282 lines
6.9 KiB
TOML
# -*- coding: utf-8 -*-
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# This file is part of anisotropy.
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# License: GNU GPL version 3, see the file "LICENSE" for details.
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[logger]
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name = "anisotropy"
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format = "[ %(levelname)s ] %(message)s"
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[base]
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simple = true
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bodyCentered = true
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faceCentered = true
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[[structures]]
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[structures.structure]
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type = "simple"
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# auto # from theta: list # theta: float
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theta = [0.01, 0.28, 0.01] # [min, max, step]
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# auto # from directions:list # direction: list
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directions = [
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[1, 0, 0],
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[0, 0, 1],
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[1, 1, 1]
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]
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# r0 =
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# L =
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# radius =
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filletsEnabled = true
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# auto # fillets: float
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[structures.mesh]
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maxSize = 0.5
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minSize = 0.05
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fineness = 5
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growthRate = 0.5
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nbSegPerEdge = 2
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nbSegPerRadius = 1
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chordalErrorEnabled = true
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chordalError = 0.25
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secondOrder = false
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optimize = true
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quadAllowed = false
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useSurfaceCurvature = true
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fuseEdges = true
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checkChartBoundary = false
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viscousLayers = true
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thickness = [0.01, 0.005] # [min, max] # step is controlled by theta count
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numberOfLayers = 1
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stretchFactor = 1
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isFacesToIgnore = true
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facesToIgnore = ["inlet", "outlet"]
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# auto # faces: list
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extrusionMethod = "SURF_OFFSET_SMOOTH"
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[[structures.submesh]]
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name = "strips"
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maxSize = 0.5
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minSize = 0.05
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fineness = 5
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growthRate = 0.2
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nbSegPerEdge = 2
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nbSegPerRadius = 3
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chordalErrorEnabled = true
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chordalError = 0.25
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secondOrder = false
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optimize = true
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quadAllowed = false
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useSurfaceCurvature = true
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fuseEdges = true
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checkChartBoundary = false
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[structures.flowapproximation]
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transportProperties.nu = 1e-6
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pressure.boundaryField.inlet = { type = "fixedValue", value = 1e-3 }
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pressure.boundaryField.outlet = { type = "fixedValue", value = 0.0 }
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# multiplication velocity value with flow direction vector
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velocity.boundaryField.inlet = { type = "fixedValue", value = 6e-5 }
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velocity.boundaryField.outlet = { type = "zeroGradient", value = "None" }
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[structures.flow]
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scale = [ 1e-5, 1e-5, 1e-5 ]
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transportProperties.nu = 1e-6
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pressure.boundaryField.inlet = { type = "fixedValue", value = 1e-3 }
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pressure.boundaryField.outlet = { type = "fixedValue", value = 0.0 }
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velocity.boundaryField.inlet = { type = "pressureInletVelocity", value = 0.0 }
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velocity.boundaryField.outlet = { type = "zeroGradient", value = "None" }
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[[structures]]
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[structures.structure]
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type = "bodyCentered"
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# auto # from theta: list # theta: float
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theta = [0.01, 0.17, 0.01] # [min, max, step]
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# auto # from directions:list # direction: list
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directions = [
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[1, 0, 0],
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[0, 0, 1],
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[1, 1, 1]
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]
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# r0 =
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# L =
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# radius =
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filletsEnabled = true
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# auto # fillets: float
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[structures.mesh]
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maxSize = 0.5
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minSize = 0.05
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fineness = 5
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growthRate = 0.5
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nbSegPerEdge = 2
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nbSegPerRadius = 1
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chordalErrorEnabled = true
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chordalError = 0.25
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secondOrder = false
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optimize = true
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quadAllowed = false
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useSurfaceCurvature = true
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fuseEdges = true
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checkChartBoundary = false
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viscousLayers = true
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thickness = [0.005, 0.0005] # [min, max] # step is controlled by theta count
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numberOfLayers = 1
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stretchFactor = 1
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isFacesToIgnore = true
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facesToIgnore = ["inlet", "outlet"]
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# auto # faces: list
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extrusionMethod = "SURF_OFFSET_SMOOTH"
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[[structures.submesh]]
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name = "strips"
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maxSize = 0.5
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minSize = 0.05
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fineness = 5
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growthRate = 0.2
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nbSegPerEdge = 2
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nbSegPerRadius = 3
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chordalErrorEnabled = true
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chordalError = 0.25
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secondOrder = false
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optimize = true
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quadAllowed = false
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useSurfaceCurvature = true
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fuseEdges = true
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checkChartBoundary = false
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[structures.flowapproximation]
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transportProperties.nu = 1e-6
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pressure.boundaryField.inlet = { type = "fixedValue", value = 1e-3 }
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pressure.boundaryField.outlet = { type = "fixedValue", value = 0.0 }
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# multiplication velocity value with direction vector
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velocity.boundaryField.inlet = { type = "fixedValue", value = 6e-5 }
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velocity.boundaryField.outlet = { type = "zeroGradient", value = "None" }
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[structures.flow]
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scale = [ 1e-5, 1e-5, 1e-5 ]
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transportProperties.nu = 1e-6
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pressure.boundaryField.inlet = { type = "fixedValue", value = 1e-3 }
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pressure.boundaryField.outlet = { type = "fixedValue", value = 0.0 }
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velocity.boundaryField.inlet = { type = "pressureInletVelocity", value = 0.0 }
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velocity.boundaryField.outlet = { type = "zeroGradient", value = "None" }
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[[structures]]
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[structures.structure]
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type = "faceCentered"
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# auto # from theta: list # theta: float
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theta = [0.01, 0.12, 0.01] # [min, max, step]
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# auto # from directions:list # direction: list
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directions = [
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[1, 0, 0],
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[0, 0, 1],
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[1, 1, 1]
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]
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# r0 =
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# L =
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# radius =
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filletsEnabled = true
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# auto # fillets: float
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[structures.mesh]
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maxSize = 0.5
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minSize = 0.05
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fineness = 5
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growthRate = 0.5
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nbSegPerEdge = 2
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nbSegPerRadius = 1
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chordalErrorEnabled = true
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chordalError = 0.25
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secondOrder = false
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optimize = true
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quadAllowed = false
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useSurfaceCurvature = true
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fuseEdges = true
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checkChartBoundary = false
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viscousLayers = true
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thickness = [0.001, 0.0005] # [min, max] # step is controlled by theta count
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numberOfLayers = 1
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stretchFactor = 1
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isFacesToIgnore = true
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facesToIgnore = ["inlet", "outlet"]
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# auto # faces: list
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extrusionMethod = "SURF_OFFSET_SMOOTH"
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[[structures.submesh]]
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name = "strips"
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maxSize = 0.5
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minSize = 0.05
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fineness = 5
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growthRate = 0.2
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nbSegPerEdge = 2
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nbSegPerRadius = 3
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chordalErrorEnabled = true
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chordalError = 0.25
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secondOrder = false
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optimize = true
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quadAllowed = false
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useSurfaceCurvature = true
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fuseEdges = true
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checkChartBoundary = false
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[structures.flowapproximation]
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transportProperties.nu = 1e-6
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pressure.boundaryField.inlet = { type = "fixedValue", value = 1e-3 }
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pressure.boundaryField.outlet = { type = "fixedValue", value = 0.0 }
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# multiplication velocity value with direction vector
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velocity.boundaryField.inlet = { type = "fixedValue", value = 6e-5 }
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velocity.boundaryField.outlet = { type = "zeroGradient", value = "None" }
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[structures.flow]
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scale = [ 1e-5, 1e-5, 1e-5 ]
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transportProperties.nu = 1e-6
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pressure.boundaryField.inlet = { type = "fixedValue", value = 1e-3 }
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pressure.boundaryField.outlet = { type = "fixedValue", value = 0.0 }
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velocity.boundaryField.inlet = { type = "pressureInletVelocity", value = 0.0 }
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velocity.boundaryField.outlet = { type = "zeroGradient", value = "None" }
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