public void Transform_ValidStochasticSoilModelWithSameProfileInTwoStochasticSoilProfiles_ReturnsExpectedMacroStabilityInwardsStochasticSoilModel(ISoilProfile soilProfile) { // Setup const string soilModelName = "name"; const double originalProfileOneProbability = 0.2; const double originalProfileTwoProbability = 0.7; StochasticSoilModel soilModel = MacroStabilityInwardsStochasticSoilModelTestFactory.CreateMacroStabilityInwardsStochasticSoilModelWithGeometry(soilModelName, new[] { new StochasticSoilProfile(originalProfileOneProbability, soilProfile), new StochasticSoilProfile(originalProfileTwoProbability, soilProfile) }); var transformer = new MacroStabilityInwardsStochasticSoilModelTransformer(); MacroStabilityInwardsStochasticSoilModel transformed = null; // Call Action call = () => transformed = transformer.Transform(soilModel); // Assert string expectedMessage = $"Ondergrondschematisatie '{soilProfile.Name}' is meerdere keren gevonden in ondergrondmodel '{soilModelName}'. " + "Kansen van voorkomen worden opgeteld."; TestHelper.AssertLogMessageWithLevelIsGenerated(call, Tuple.Create(expectedMessage, LogLevelConstant.Warn)); MacroStabilityInwardsStochasticSoilProfile[] transformedStochasticSoilProfiles = transformed.StochasticSoilProfiles.ToArray(); Assert.AreEqual(1, transformedStochasticSoilProfiles.Length); const double expectedProbability = originalProfileOneProbability + originalProfileTwoProbability; Assert.AreEqual(expectedProbability, transformedStochasticSoilProfiles[0].Probability, 1e-6); }
public void Transform_ValidStochasticSoilModelWithSoilProfile2D_ReturnsExpectedMacroStabilityInwardsStochasticSoilModel() { // Setup var random = new Random(21); double probability = random.NextDouble(); var transformer = new MacroStabilityInwardsStochasticSoilModelTransformer(); StochasticSoilModel soilModel = MacroStabilityInwardsStochasticSoilModelTestFactory.CreateMacroStabilityInwardsStochasticSoilModelWithGeometry("some name", new[] { new StochasticSoilProfile(probability, new SoilProfile2D(2, "test", new[] { SoilLayer2DTestFactory.CreateSoilLayer2D() }, Enumerable.Empty <PreconsolidationStress>())) }); // Call MacroStabilityInwardsStochasticSoilModel transformedModel = transformer.Transform(soilModel); // Assert Assert.AreEqual(soilModel.Name, transformedModel.Name); CollectionAssert.AreEqual(soilModel.Geometry, transformedModel.Geometry); Assert.AreEqual(1, transformedModel.StochasticSoilProfiles.Count()); var expectedStochasticSoilProfile = new MacroStabilityInwardsStochasticSoilProfile(probability, new MacroStabilityInwardsSoilProfile2D("test", new[] { new MacroStabilityInwardsSoilLayer2D(new Ring(new[] { new Point2D(1.0, 1.0), new Point2D(2.0, 1.0) }), new MacroStabilityInwardsSoilLayerData { UsePop = true }, new[] { new MacroStabilityInwardsSoilLayer2D(new Ring(new[] { new Point2D(0.0, 0.0), new Point2D(1.0, 0.0) }), new MacroStabilityInwardsSoilLayerData { UsePop = true }, Enumerable.Empty <MacroStabilityInwardsSoilLayer2D>()) }) }, Enumerable.Empty <MacroStabilityInwardsPreconsolidationStress>())); AssertStochasticSoilProfile(expectedStochasticSoilProfile, transformedModel.StochasticSoilProfiles.First()); }
public void Transform_StochasticSoilModelNull_ThrowsArgumentNullException() { // Setup var transformer = new MacroStabilityInwardsStochasticSoilModelTransformer(); // Call TestDelegate call = () => transformer.Transform(null); // Assert var exception = Assert.Throws <ArgumentNullException>(call); Assert.AreEqual("stochasticSoilModel", exception.ParamName); }
public void Transform_InvalidFailureMechanismType_ThrowsImportedDataTransformException(FailureMechanismType failureMechanismType) { // Setup var transformer = new MacroStabilityInwardsStochasticSoilModelTransformer(); var soilModel = new StochasticSoilModel("some name", failureMechanismType); // Call TestDelegate test = () => transformer.Transform(soilModel); // Assert var exception = Assert.Throws <ImportedDataTransformException>(test); Assert.AreEqual($"Het stochastische ondergrondmodel met '{failureMechanismType}' als faalmechanisme type is niet ondersteund. " + "Alleen stochastische ondergrondmodellen met 'Stability' als faalmechanisme type zijn ondersteund.", exception.Message); }
public void Transform_TwoStochasticSoilModelsWithSameProfile_ReturnExpectedMacroStabilityInwardsStochasticSoilModel() { // Setup SoilLayer2D layer = SoilLayer2DTestFactory.CreateSoilLayer2D(); var profile = new SoilProfile2D(2, "test", new[] { layer }, Enumerable.Empty <PreconsolidationStress>()); StochasticSoilModel soilModel1 = MacroStabilityInwardsStochasticSoilModelTestFactory.CreateMacroStabilityInwardsStochasticSoilModelWithGeometry(new[] { StochasticSoilProfileTestFactory.CreateStochasticSoilProfileWithValidProbability(profile) }); StochasticSoilModel soilModel2 = MacroStabilityInwardsStochasticSoilModelTestFactory.CreateMacroStabilityInwardsStochasticSoilModelWithGeometry(new[] { StochasticSoilProfileTestFactory.CreateStochasticSoilProfileWithValidProbability(profile) }); var transformer = new MacroStabilityInwardsStochasticSoilModelTransformer(); // Call MacroStabilityInwardsStochasticSoilModel transformedModel1 = transformer.Transform(soilModel1); MacroStabilityInwardsStochasticSoilModel transformedModel2 = transformer.Transform(soilModel2); // Assert MacroStabilityInwardsStochasticSoilProfile[] transformedStochasticSoilProfiles1 = transformedModel1.StochasticSoilProfiles.ToArray(); MacroStabilityInwardsStochasticSoilProfile[] transformedStochasticSoilProfiles2 = transformedModel2.StochasticSoilProfiles.ToArray(); Assert.AreEqual(1, transformedStochasticSoilProfiles1.Length); Assert.AreEqual(1, transformedStochasticSoilProfiles2.Length); MacroStabilityInwardsStochasticSoilProfile stochasticSoilProfile1 = transformedStochasticSoilProfiles1[0]; MacroStabilityInwardsStochasticSoilProfile stochasticSoilProfile2 = transformedStochasticSoilProfiles2[0]; Assert.AreSame(stochasticSoilProfile1.SoilProfile, stochasticSoilProfile2.SoilProfile); }
public void Transform_InvalidStochasticSoilModel_ThrowsImportedDataTransformException() { // Setup var stochasticSoilModel = new StochasticSoilModel("name", FailureMechanismType.Stability); var transformer = new MacroStabilityInwardsStochasticSoilModelTransformer(); // Call TestDelegate test = () => transformer.Transform(stochasticSoilModel); // Assert var exception = Assert.Throws <ImportedDataTransformException>(test); Exception innerException = exception.InnerException; Assert.IsNotNull(innerException); Assert.IsInstanceOf <ArgumentException>(innerException); Assert.AreEqual(innerException.Message, exception.Message); }
public void Transform_ValidStochasticSoilModelWithProfileInvalidProbability_ThrowsImportedDataException(StochasticSoilProfile profile) { // Setup StochasticSoilModel soilModel = MacroStabilityInwardsStochasticSoilModelTestFactory.CreateMacroStabilityInwardsStochasticSoilModelWithGeometry(new[] { profile }); var transformer = new MacroStabilityInwardsStochasticSoilModelTransformer(); // Call TestDelegate call = () => transformer.Transform(soilModel); // Assert var exception = Assert.Throws <ImportedDataTransformException>(call); const string expectedMessage = "Het aandeel van de ondergrondschematisatie in het stochastische ondergrondmodel " + "moet in het bereik [0,0, 1,0] liggen."; StringAssert.StartsWith(expectedMessage, exception.Message); }
public void Transform_ValidStochasticSoilModelWithSoilProfile1D_ReturnsExpectedMacroStabilityInwardsStochasticSoilModel() { // Setup var random = new Random(21); double probability = random.NextDouble(); const double top = 4; var transformer = new MacroStabilityInwardsStochasticSoilModelTransformer(); StochasticSoilModel soilModel = MacroStabilityInwardsStochasticSoilModelTestFactory.CreateMacroStabilityInwardsStochasticSoilModelWithGeometry("some name", new[] { new StochasticSoilProfile(probability, new SoilProfile1D(2, "test", 3, new[] { SoilLayer1DTestFactory.CreateSoilLayer1DWithValidAquifer(top) })) }); // Call MacroStabilityInwardsStochasticSoilModel transformedModel = transformer.Transform(soilModel); // Assert Assert.AreEqual(soilModel.Name, transformedModel.Name); CollectionAssert.AreEqual(soilModel.Geometry, transformedModel.Geometry); Assert.AreEqual(1, transformedModel.StochasticSoilProfiles.Count()); var expectedStochasticSoilProfile = new MacroStabilityInwardsStochasticSoilProfile(probability, new MacroStabilityInwardsSoilProfile1D("test", 3, new[] { new MacroStabilityInwardsSoilLayer1D(top) { Data = { UsePop = true, ShearStrengthModel = MacroStabilityInwardsShearStrengthModel.CPhi, IsAquifer = false } } })); AssertStochasticSoilProfile(expectedStochasticSoilProfile, transformedModel.StochasticSoilProfiles.First()); }
public void Transform_ValidStochasticSoilModelWithSimilarProfileInTwoStochasticSoilProfiles_ReturnsExpectedMacroStabilityInwardsStochasticSoilModel() { // Setup var random = new Random(21); const string soilProfileName = "SoilProfile"; const double intersectionX = 1.0; var soilProfile2D = new SoilProfile2D(0, soilProfileName, new[] { SoilLayer2DTestFactory.CreateSoilLayer2D() }, Enumerable.Empty <PreconsolidationStress>()) { IntersectionX = intersectionX }; var stochasticSoilProfile2D = new StochasticSoilProfile(random.NextDouble(), soilProfile2D); var soilProfile1D = new SoilProfile1D(0, soilProfileName, 0, new[] { SoilLayer1DTestFactory.CreateSoilLayer1DWithValidAquifer() }); var stochasticSoilProfile1D = new StochasticSoilProfile(random.NextDouble(), soilProfile1D); StochasticSoilModel soilModel = MacroStabilityInwardsStochasticSoilModelTestFactory.CreateMacroStabilityInwardsStochasticSoilModelWithGeometry(new[] { stochasticSoilProfile2D, stochasticSoilProfile1D }); var transformer = new MacroStabilityInwardsStochasticSoilModelTransformer(); // Call MacroStabilityInwardsStochasticSoilModel transformed = transformer.Transform(soilModel); // Assert MacroStabilityInwardsStochasticSoilProfile[] transformedStochasticSoilProfiles = transformed.StochasticSoilProfiles.ToArray(); Assert.AreEqual(2, transformedStochasticSoilProfiles.Length); Assert.AreEqual(stochasticSoilProfile2D.Probability, transformedStochasticSoilProfiles[0].Probability, 1e-6); Assert.AreEqual(stochasticSoilProfile1D.Probability, transformedStochasticSoilProfiles[1].Probability, 1e-6); }