234 lines
11 KiB
C#
234 lines
11 KiB
C#
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using System;
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using System.Collections.Generic;
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using System.Linq;
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using System.Text;
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using System.Threading.Tasks;
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using System.ComponentModel;
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using CaeGlobals;
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using DynamicTypeDescriptor;
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using System.Drawing.Design;
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using CaeModel;
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namespace CPSO
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{
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[Serializable]
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public class ViewHydrostaticPressureLoad : ViewLoad
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{
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// Variables
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private HydrostaticPressure _hpLoad;
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private ItemSetData _singlePointItemSetData;
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private ItemSetData _twoPointPointItemSetData;
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// Properties
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public override string Name { get { return _hpLoad.Name; } set { _hpLoad.Name = value; } }
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//
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[Category("Region")]
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[OrderedDisplayName(2, 10, "Surface")]
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[Description("Select the surface for the creation of the load.")]
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[Id(3, 2)]
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public string SurfaceName { get { return _hpLoad.RegionName; } set { _hpLoad.RegionName = value; } }
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//
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[Category("First point coordinates")]
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[OrderedDisplayName(0, 10, "By selection")]
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[Description("Use selection for the definition of the first point.")]
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[Editor(typeof(SinglePointDataEditor), typeof(UITypeEditor))]
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[Id(1, 3)]
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public ItemSetData FirstPointItemSet
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{
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get { return _singlePointItemSetData; }
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set
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{
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if (value != _singlePointItemSetData)
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_singlePointItemSetData = value;
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}
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}
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//
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[Category("First point coordinates")]
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[OrderedDisplayName(1, 10, "X")]
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[Description("X coordinate of the first point.")]
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[TypeConverter(typeof(EquationLengthConverter))]
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[Id(2, 3)]
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public EquationString X1 { get { return _hpLoad.X1.Equation; } set { _hpLoad.X1.Equation = value; } }
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//
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[Category("First point coordinates")]
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[OrderedDisplayName(2, 10, "Y")]
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[Description("Y coordinate of the first point.")]
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[TypeConverter(typeof(EquationLengthConverter))]
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[Id(3, 3)]
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public EquationString Y1 { get { return _hpLoad.Y1.Equation; } set { _hpLoad.Y1.Equation = value; } }
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//
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[Category("First point coordinates")]
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[OrderedDisplayName(3, 10, "Z")]
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[Description("Z coordinate of the first point.")]
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[TypeConverter(typeof(EquationLengthConverter))]
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[Id(4, 3)]
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public EquationString Z1 { get { return _hpLoad.Z1.Equation; } set { _hpLoad.Z1.Equation = value; } }
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//
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[Category("First point pressure magnitude")]
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[OrderedDisplayName(0, 10, "Magnitude")]
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[Description("Pressure magnitude at the first point.")]
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[TypeConverter(typeof(EquationPressureConverter))]
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[Id(1, 4)]
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public EquationString FirstPointPressure
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{
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get { return _hpLoad.FirstPointPressure.Equation; }
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set { _hpLoad.FirstPointPressure.Equation = value; }
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}
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//
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[Category("Second point coordinates")]
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[OrderedDisplayName(0, 10, "By selection ")] // must be a different name than for the first point !!!
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[Description("Use selection for the definition of the second point.")]
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[Editor(typeof(SinglePointDataEditor), typeof(UITypeEditor))]
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[Id(1, 5)]
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public ItemSetData SecondPointItemSet
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{
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get { return _singlePointItemSetData; }
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set
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{
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if (value != _singlePointItemSetData)
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_singlePointItemSetData = value;
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}
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}
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//
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[Category("Second point coordinates")] // must be a different name than for the first point !!!
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[OrderedDisplayName(1, 10, "X ")]
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[Description("X coordinate of the second point.")]
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[TypeConverter(typeof(EquationLengthConverter))]
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[Id(2, 5)]
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public EquationString X2 { get { return _hpLoad.X2.Equation; } set { _hpLoad.X2.Equation = value; } }
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//
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[Category("Second point coordinates")] // must be a different name than for the first point !!!
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[OrderedDisplayName(2, 10, "Y ")]
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[Description("Y coordinate of the second point.")]
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[TypeConverter(typeof(EquationLengthConverter))]
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[Id(3, 5)]
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public EquationString Y2 { get { return _hpLoad.Y2.Equation; } set { _hpLoad.Y2.Equation = value; } }
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//
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[Category("Second point coordinates")] // must be a different name than for the first point !!!
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[OrderedDisplayName(3, 10, "Z ")]
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[Description("Z coordinate of the second point.")]
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[TypeConverter(typeof(EquationLengthConverter))]
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[Id(4, 5)]
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public EquationString Z2 { get { return _hpLoad.Z2.Equation; } set { _hpLoad.Z2.Equation = value; } }
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//
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[Category("Second point pressure magnitude")] // must be a different name than for the first point !!!
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[OrderedDisplayName(0, 10, "Magnitude ")]
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[Description("Pressure magnitude at the second point.")]
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[TypeConverter(typeof(EquationPressureConverter))]
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[Id(1, 6)]
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public EquationString SecondPointPressure
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{
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get { return _hpLoad.SecondPointPressure.Equation; }
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set { _hpLoad.SecondPointPressure.Equation = value; }
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}
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//
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[Category("Pressure change direction")]
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[OrderedDisplayName(0, 10, "By selection ")] // must be a different name than for the first point !!!
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[Description("Use selection for the definition of the pressure direction.")]
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[Editor(typeof(SinglePointDataEditor), typeof(UITypeEditor))]
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[Id(1, 7)]
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public ItemSetData PressureDirectionItemSet
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{
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get { return _twoPointPointItemSetData; }
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set
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{
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if (value != _twoPointPointItemSetData)
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_twoPointPointItemSetData = value;
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}
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}
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//
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[Category("Pressure change direction")]
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[OrderedDisplayName(0, 10, "N1")]
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[Description("Direction component in the direction of the first axis.")]
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[TypeConverter(typeof(EquationLengthConverter))]
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[Id(2, 7)]
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public EquationString N1 { get { return _hpLoad.N1.Equation; } set { _hpLoad.N1.Equation = value; } }
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//
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[Category("Pressure change direction")]
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[OrderedDisplayName(1, 10, "N2")]
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[Description("Direction component in the direction of the second axis.")]
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[TypeConverter(typeof(EquationLengthConverter))]
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[Id(3, 7)]
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public EquationString N2 { get { return _hpLoad.N2.Equation; } set { _hpLoad.N2.Equation = value; } }
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//
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[Category("Pressure change direction")]
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[OrderedDisplayName(2, 10, "N3")]
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[Description("Direction component in the direction of the third axis.")]
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[TypeConverter(typeof(EquationLengthConverter))]
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[Id(4, 7)]
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public EquationString N3 { get { return _hpLoad.N3.Equation; } set { _hpLoad.N3.Equation = value; } }
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//
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[Category("Pressure phase")]
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[OrderedDisplayName(0, 10, "Phase")]
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[Description("Value of the pressure phase.")]
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[TypeConverter(typeof(EquationAngleDegConverter))]
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[Id(1, 8)]
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public EquationString Phase { get { return _hpLoad.PhaseDeg.Equation; } set { _hpLoad.PhaseDeg.Equation = value; } }
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//
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//
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[Category("Pressure cutoff")]
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[OrderedDisplayName(0, 10, "Cutoff")]
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[Description("A positive pressure cutoff sets all positive pressure values to 0, " +
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"while a negative pressure cutoff sets all negative pressure values to 0.")]
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[Id(1, 9)]
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public HydrostaticPressureCutoffEnum HydrostaticPressureType
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{
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get { return _hpLoad.HydrostaticPressureCutoff; }
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set { _hpLoad.HydrostaticPressureCutoff = value; }
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}
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//
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public override string AmplitudeName { get { return _hpLoad.AmplitudeName; } set { _hpLoad.AmplitudeName = value; } }
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[Browsable(false)]
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public override string CoordinateSystemName
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{
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get { return _hpLoad.CoordinateSystemName; }
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set { _hpLoad.CoordinateSystemName = value; }
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}
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public override System.Drawing.Color Color { get { return _hpLoad.Color; } set { _hpLoad.Color = value; } }
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// Constructors
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public ViewHydrostaticPressureLoad(HydrostaticPressure hpLoad)
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{
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// The order is important
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_hpLoad = hpLoad;
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//
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Dictionary<RegionTypeEnum, string> regionTypePropertyNamePairs = new Dictionary<RegionTypeEnum, string>();
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regionTypePropertyNamePairs.Add(RegionTypeEnum.Selection, nameof(SelectionHidden));
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regionTypePropertyNamePairs.Add(RegionTypeEnum.SurfaceName, nameof(SurfaceName));
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//
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SetBase(_hpLoad, regionTypePropertyNamePairs);
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DynamicCustomTypeDescriptor = ProviderInstaller.Install(this);
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//
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_singlePointItemSetData = new ItemSetData(); // needed to display ItemSetData.ToString()
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_singlePointItemSetData.ToStringType = ItemSetDataToStringType.SelectSinglePoint;
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_twoPointPointItemSetData = new ItemSetData(); // needed to display ItemSetData.ToString()
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_twoPointPointItemSetData.ToStringType = ItemSetDataToStringType.SelectTwoPoints;
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// 2D
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DynamicCustomTypeDescriptor.GetProperty(nameof(Z1)).SetIsBrowsable(!hpLoad.TwoD);
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DynamicCustomTypeDescriptor.GetProperty(nameof(Z2)).SetIsBrowsable(!hpLoad.TwoD);
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DynamicCustomTypeDescriptor.GetProperty(nameof(N3)).SetIsBrowsable(!hpLoad.TwoD);
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// Phase
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DynamicCustomTypeDescriptor.GetProperty(nameof(Phase)).SetIsBrowsable(hpLoad.Complex);
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}
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// Methods
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public override Load GetBase()
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{
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return _hpLoad;
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}
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public void PopulateDropDownLists(string[] surfaceNames, string[] amplitudeNames)
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{
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Dictionary<RegionTypeEnum, string[]> regionTypeListItemsPairs = new Dictionary<RegionTypeEnum, string[]>();
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regionTypeListItemsPairs.Add(RegionTypeEnum.Selection, new string[] { "Hidden" });
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regionTypeListItemsPairs.Add(RegionTypeEnum.SurfaceName, surfaceNames);
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PopulateDropDownLists(regionTypeListItemsPairs);
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//
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PopulateAmplitudeNames(amplitudeNames);
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}
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}
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}
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