private static void AssertConstructionStages(
            UpliftVanCalculatorInput input, StabilityInput stabilityModel, SoilProfile soilProfile,
            Waternet dailyWaternet, Waternet extremeWaternet, IDictionary <SoilLayer, LayerWithSoil> layerLookup)
        {
            Assert.AreEqual(2, stabilityModel.ConstructionStages.Count);

            ConstructionStage dailyConstructionStage = stabilityModel.ConstructionStages.ElementAt(0);

            Assert.AreSame(soilProfile, dailyConstructionStage.SoilProfile);
            Assert.AreSame(dailyWaternet, dailyConstructionStage.Waternet);
            CollectionAssert.AreEqual(FixedSoilStressCreator.Create(layerLookup),
                                      dailyConstructionStage.FixedSoilStresses, new FixedSoilStressComparer());
            CollectionAssert.AreEqual(PreconsolidationStressCreator.Create(input.SoilProfile.PreconsolidationStresses),
                                      dailyConstructionStage.PreconsolidationStresses, new PreconsolidationStressComparer());
            AssertMultiplicationFactors(dailyConstructionStage.MultiplicationFactorsCPhiForUplift.Single());
            AssertIrrelevantValues(dailyConstructionStage);

            ConstructionStage extremeConstructionStage = stabilityModel.ConstructionStages.ElementAt(1);

            Assert.AreSame(soilProfile, extremeConstructionStage.SoilProfile);
            Assert.AreSame(extremeWaternet, extremeConstructionStage.Waternet);
            CollectionAssert.IsEmpty(extremeConstructionStage.FixedSoilStresses);
            CollectionAssert.IsEmpty(extremeConstructionStage.PreconsolidationStresses);
            AssertMultiplicationFactors(extremeConstructionStage.MultiplicationFactorsCPhiForUplift.Single());
            AssertIrrelevantValues(extremeConstructionStage);
        }
        public void CreateUpliftVan_ValidDataWithManualTangentLines_ReturnMacroStabilityInput()
        {
            // Setup
            var    random            = new Random(21);
            double tangentZTop       = random.NextDouble();
            double tangentZBottom    = random.NextDouble();
            int    tangentLineNumber = random.Next();

            UpliftVanCalculatorInput input = UpliftVanCalculatorInputTestFactory.Create(tangentZTop, tangentZBottom, tangentLineNumber);

            LayerWithSoil[] layersWithSoil = LayerWithSoilCreator.Create(input.SoilProfile, out IDictionary <SoilLayer, LayerWithSoil> layerLookup);
            List <Soil>     soils          = layersWithSoil.Select(lws => lws.Soil).ToList();

            SurfaceLine surfaceLine = SurfaceLineCreator.Create(input.SurfaceLine);
            SoilProfile soilProfile = SoilProfileCreator.Create(layersWithSoil);

            var dailyWaternet   = new Waternet();
            var extremeWaternet = new Waternet();

            // Call
            MacroStabilityInput macroStabilityInput = MacroStabilityInputCreator.CreateUpliftVan(
                input, soils, layerLookup, surfaceLine, soilProfile, dailyWaternet, extremeWaternet);

            // Assert
            SearchAreaConditions searchAreaConditions = macroStabilityInput.PreprocessingInput.SearchAreaConditions;

            Assert.AreEqual(input.SlipPlane.TangentLinesAutomaticAtBoundaries, searchAreaConditions.AutoTangentLines);
            Assert.AreEqual(input.SlipPlane.TangentLineNumber, searchAreaConditions.TangentLineNumber);
            Assert.AreEqual(input.SlipPlane.TangentZTop, searchAreaConditions.TangentLineZTop);
            Assert.AreEqual(input.SlipPlane.TangentZBottom, searchAreaConditions.TangentLineZBottom);
        }
        public void Create_WaternetWithPhreaticLineAndHeadLinesAndWaternetLines_ReturnWaternetCalculatorResult()
        {
            // Setup
            var headLine = new HeadLine
            {
                Name   = "line 1",
                Points =
                {
                    new CSharpWrapperPoint2D(0, 0),
                    new CSharpWrapperPoint2D(1, 1)
                }
            };
            var phreaticLine = new HeadLine
            {
                Name   = "line 2",
                Points =
                {
                    new CSharpWrapperPoint2D(2, 2),
                    new CSharpWrapperPoint2D(3, 3)
                }
            };
            var referenceLine = new ReferenceLine
            {
                Name   = "line 3",
                Points =
                {
                    new CSharpWrapperPoint2D(4, 4),
                    new CSharpWrapperPoint2D(5, 5)
                },
                AssociatedHeadLine = headLine
            };

            var waternet = new Waternet
            {
                HeadLines =
                {
                    headLine
                },
                PhreaticLine   = phreaticLine,
                ReferenceLines =
                {
                    referenceLine
                }
            };

            // Call
            WaternetCalculatorResult result = WaternetCalculatorResultCreator.Create(waternet);

            // Assert
            WaternetCalculatorOutputAssert.AssertPhreaticLines(new[]
            {
                phreaticLine,
                headLine
            }, result.PhreaticLines.ToArray());

            WaternetCalculatorOutputAssert.AssertReferenceLines(new[]
            {
                referenceLine
            }, result.WaternetLines.ToArray());
        }
        /// <summary>
        /// Creates a <see cref="WaternetCalculatorResult"/> based on the information
        /// given in the <paramref name="waternet"/>.
        /// </summary>
        /// <param name="waternet">The output to create the result for.</param>
        /// <returns>A new <see cref="WaternetCalculatorResult"/> with information
        /// taken from the <paramref name="waternet"/>.</returns>
        /// <exception cref="ArgumentNullException">Thrown when <paramref name="waternet"/>
        /// is <c>null</c>.</exception>
        public static WaternetCalculatorResult Create(Waternet waternet)
        {
            if (waternet == null)
            {
                throw new ArgumentNullException(nameof(waternet));
            }

            var phreaticLineLookup = new Dictionary <HeadLine, WaternetPhreaticLineResult>
            {
                {
                    waternet.PhreaticLine, CreatePhreaticLineResult(waternet.PhreaticLine)
                }
            };

            foreach (HeadLine headLine in waternet.HeadLines)
            {
                phreaticLineLookup.Add(headLine, CreatePhreaticLineResult(headLine));
            }

            return(new WaternetCalculatorResult(phreaticLineLookup.Values,
                                                waternet.ReferenceLines.Select(wl => CreateWaternetLineResult(wl, phreaticLineLookup)).ToArray()));
        }
Exemplo n.º 5
0
 private static ConstructionStage AddConstructionStage(
     SoilProfile soilProfile,
     Waternet waternet,
     List <FixedSoilStress> fixedSoilStresses = null,
     List <KernelPreconsolidationStress> preconsolidationStresses = null)
 {
     return(new ConstructionStage
     {
         SoilProfile = soilProfile,
         Waternet = waternet,
         FixedSoilStresses = fixedSoilStresses ?? new List <FixedSoilStress>(),
         PreconsolidationStresses = preconsolidationStresses ?? new List <KernelPreconsolidationStress>(),
         MultiplicationFactorsCPhiForUplift =
         {
             new MultiplicationFactorsCPhiForUplift
             {
                 MultiplicationFactor = 0.0,
                 UpliftFactor = 1.2
             }
         }
     });
 }
        public void CreateUpliftVan_ValidData_ReturnMacroStabilityInput()
        {
            // Setup
            UpliftVanCalculatorInput input = UpliftVanCalculatorInputTestFactory.Create();

            LayerWithSoil[] layersWithSoil = LayerWithSoilCreator.Create(input.SoilProfile, out IDictionary <SoilLayer, LayerWithSoil> layerLookup);
            List <Soil>     soils          = layersWithSoil.Select(lws => lws.Soil).ToList();

            SurfaceLine surfaceLine = SurfaceLineCreator.Create(input.SurfaceLine);
            SoilProfile soilProfile = SoilProfileCreator.Create(layersWithSoil);

            var dailyWaternet   = new Waternet();
            var extremeWaternet = new Waternet();

            // Call
            MacroStabilityInput macroStabilityInput = MacroStabilityInputCreator.CreateUpliftVan(
                input, soils, layerLookup, surfaceLine, soilProfile, dailyWaternet, extremeWaternet);

            // Assert
            StabilityInput stabilityModel = macroStabilityInput.StabilityModel;

            Assert.AreEqual(Orientation.Inwards, stabilityModel.Orientation);
            Assert.AreEqual(SearchAlgorithm.Grid, stabilityModel.SearchAlgorithm);
            Assert.AreEqual(StabilityModelOptionType.UpliftVan, stabilityModel.ModelOption);

            CollectionAssert.AreEqual(soils, stabilityModel.Soils, new SoilComparer());
            Assert.AreEqual(input.MoveGrid, stabilityModel.MoveGrid);
            Assert.AreEqual(input.MaximumSliceWidth, stabilityModel.MaximumSliceWidth);

            UpliftVanKernelInputAssert.AssertUpliftVanCalculationGrid(
                UpliftVanCalculationGridCreator.Create(input.SlipPlane), stabilityModel.UpliftVanCalculationGrid);

            UpliftVanKernelInputAssert.AssertSlipPlaneConstraints(
                SlipPlaneConstraintsCreator.Create(input.SlipPlaneConstraints), stabilityModel.SlipPlaneConstraints);

            AssertConstructionStages(input, stabilityModel, soilProfile, dailyWaternet, extremeWaternet, layerLookup);

            Assert.AreEqual(input.SlipPlane.GridNumberOfRefinements, stabilityModel.NumberOfRefinementsGrid);
            Assert.AreEqual(input.SlipPlane.TangentLineNumberOfRefinements, stabilityModel.NumberOfRefinementsTangentLines);

            SearchAreaConditions searchAreaConditions = macroStabilityInput.PreprocessingInput.SearchAreaConditions;

            Assert.AreEqual(0.8, searchAreaConditions.MaxSpacingBetweenBoundaries);
            Assert.IsTrue(searchAreaConditions.OnlyAbovePleistoceen);
            Assert.AreEqual(input.SlipPlane.GridAutomaticDetermined, searchAreaConditions.AutoSearchArea);
            Assert.AreEqual(input.SlipPlane.TangentLinesAutomaticAtBoundaries, searchAreaConditions.AutoTangentLines);
            Assert.AreEqual(1, searchAreaConditions.TangentLineNumber);
            Assert.AreEqual(0, searchAreaConditions.TangentLineZTop);
            Assert.AreEqual(0, searchAreaConditions.TangentLineZBottom);
            Assert.AreEqual(input.SlipPlaneConstraints.AutomaticForbiddenZones, searchAreaConditions.AutomaticForbiddenZones);

            Assert.AreEqual(2, macroStabilityInput.PreprocessingInput.PreConstructionStages.Count);

            foreach (PreConstructionStage preConstructionStage in macroStabilityInput.PreprocessingInput.PreConstructionStages)
            {
                Assert.IsFalse(preConstructionStage.CreateWaternet);
                Assert.AreSame(surfaceLine, preConstructionStage.SurfaceLine);
                Assert.IsNull(preConstructionStage.WaternetCreatorInput); // Not needed as Waternet is already calculated
            }

            AssertIrrelevantValues(stabilityModel, searchAreaConditions);
        }
Exemplo n.º 7
0
        /// <summary>
        /// Creates <see cref="MacroStabilityInput"/> objects based on the given input for the Uplift Van calculation.
        /// </summary>
        /// <param name="upliftVanInput">The <see cref="UpliftVanCalculatorInput"/> containing all the values required
        /// for performing the Uplift Van calculation.</param>
        /// <param name="soils">The collection of <see cref="Soil"/>.</param>
        /// <param name="layerLookup">The lookup between <see cref="Soil"/> and <see cref="SoilLayer"/>.</param>
        /// <param name="surfaceLine">The <see cref="SurfaceLine"/>.</param>
        /// <param name="soilProfile">The <see cref="SoilProfile"/>.</param>
        /// <param name="dailyWaternet">The calculated <see cref="Waternet"/> for daily circumstances.</param>
        /// <param name="extremeWaternet">The calculated <see cref="Waternet"/> for extreme circumstances.</param>
        /// <returns>The created <see cref="MacroStabilityInput"/>.</returns>
        /// <exception cref="ArgumentNullException">Thrown when any parameter is <c>null</c>.</exception>
        public static MacroStabilityInput CreateUpliftVan(UpliftVanCalculatorInput upliftVanInput, ICollection <Soil> soils,
                                                          IDictionary <SoilLayer, LayerWithSoil> layerLookup, SurfaceLine surfaceLine,
                                                          SoilProfile soilProfile, Waternet dailyWaternet, Waternet extremeWaternet)
        {
            if (upliftVanInput == null)
            {
                throw new ArgumentNullException(nameof(upliftVanInput));
            }

            if (soils == null)
            {
                throw new ArgumentNullException(nameof(soils));
            }

            if (layerLookup == null)
            {
                throw new ArgumentNullException(nameof(layerLookup));
            }

            if (surfaceLine == null)
            {
                throw new ArgumentNullException(nameof(surfaceLine));
            }

            if (soilProfile == null)
            {
                throw new ArgumentNullException(nameof(soilProfile));
            }

            if (dailyWaternet == null)
            {
                throw new ArgumentNullException(nameof(dailyWaternet));
            }

            if (extremeWaternet == null)
            {
                throw new ArgumentNullException(nameof(extremeWaternet));
            }

            var macroStabilityInput = new MacroStabilityInput
            {
                StabilityModel =
                {
                    Orientation        = Orientation.Inwards,
                    SearchAlgorithm    = SearchAlgorithm.Grid,
                    ModelOption        = StabilityModelOptionType.UpliftVan,
                    ConstructionStages =
                    {
                        AddConstructionStage(soilProfile,                                                                                         dailyWaternet, FixedSoilStressCreator.Create(layerLookup).ToList(),
                                             PreconsolidationStressCreator.Create(upliftVanInput.SoilProfile.PreconsolidationStresses).ToList()),
                        AddConstructionStage(soilProfile,                                                                                         extremeWaternet)
                    },
                    Soils                           = soils,
                    MoveGrid                        = upliftVanInput.MoveGrid,
                    MaximumSliceWidth               = upliftVanInput.MaximumSliceWidth,
                    UpliftVanCalculationGrid        = UpliftVanCalculationGridCreator.Create(upliftVanInput.SlipPlane),
                    SlipPlaneConstraints            = SlipPlaneConstraintsCreator.Create(upliftVanInput.SlipPlaneConstraints),
                    NumberOfRefinementsGrid         = upliftVanInput.SlipPlane.GridNumberOfRefinements,
                    NumberOfRefinementsTangentLines = upliftVanInput.SlipPlane.TangentLineNumberOfRefinements
                },
                PreprocessingInput =
                {
                    SearchAreaConditions            =
                    {
                        MaxSpacingBetweenBoundaries =                                                        0.8,
                        OnlyAbovePleistoceen        = true,
                        AutoSearchArea          = upliftVanInput.SlipPlane.GridAutomaticDetermined,
                        AutoTangentLines        = upliftVanInput.SlipPlane.TangentLinesAutomaticAtBoundaries,
                        AutomaticForbiddenZones = upliftVanInput.SlipPlaneConstraints.AutomaticForbiddenZones
                    },
                    PreConstructionStages           =
                    {
                        AddPreConstructionStage(surfaceLine),
                        AddPreConstructionStage(surfaceLine)
                    }
                }
            };

            SetTangentLineProperties(upliftVanInput, macroStabilityInput);

            return(macroStabilityInput);
        }