using LoaderCalculator.Tests.Infrastructures.Logics; using Moq; using NUnit.Framework; using StructureHelperCommon.Services.Forces; using StructureHelperLogics.Models.Templates.CrossSections.RCs; using StructureHelperLogics.Models.Templates.RCs; using StructureHelperLogics.NdmCalculations.Analyses.ByForces; using StructureHelperLogics.NdmCalculations.Primitives; namespace StructureHelperTests.FunctionalTests.Ndms.Calculators.ForceCalculatorTests { public class RCSectionsTest { [TestCase(0.4d, 0.6d, 0.012d, 0.025d, 2, 2, false, -0.00068654617067958799d, -0.0030411189808055242d, 0.00034289928716916179d)] public void Run_ShouldPass(double width, double height, double topDiametr, double bottomDiametr, int widthCount, int heightCount, bool isBuckling, double expectedKx, double expectedKy, double expectedEpsZ) { //Arrange var template = new RectangleBeamTemplate(width, height) { TopDiameter = topDiametr, BottomDiameter = bottomDiametr, WidthCount = widthCount, HeightCount = heightCount }; var newSection = new SectionTemplate(new RectGeometryLogic(template)).GetCrossSection(); var calculator = newSection.SectionRepository.CalculatorsList[0] as IForceCalculator; calculator.CompressedMember.Buckling = isBuckling; //Act calculator.Run(); var result = calculator.Result as IForcesResults; //Assert Assert.IsNotNull(result); Assert.IsTrue(result.IsValid); var strainMatrix = result.ForcesResultList[0].LoaderResults.StrainMatrix; var kx = strainMatrix.Kx; var ky = strainMatrix.Ky; var epsz = strainMatrix.EpsZ; Assert.AreEqual(expectedKx, kx, ExpectedProcessor.GetAccuracyForExpectedValue(expectedKx)); Assert.AreEqual(expectedKy, ky, ExpectedProcessor.GetAccuracyForExpectedValue(expectedKy)); Assert.AreEqual(expectedEpsZ, epsz, ExpectedProcessor.GetAccuracyForExpectedValue(expectedEpsZ)); } [TestCase(0.4d, 0.6d, 0.012d, 0.025d, 2, 2, false, true, true)] [TestCase(1d, 0.2d, 0.012d, 0.012d, 5, 2, false, true, false)] [TestCase(1d, 0.2d, 0.012d, 0.025d, 5, 2, false, true, true)] public void Run_ShouldPass_Result_IsNotValid(double width, double height, double topDiametr, double bottomDiametr, int widthCount, int heightCount,bool isBuckling, bool calcResult, bool firstForceResult) { //Arrange var template = new RectangleBeamTemplate(width, height) { TopDiameter = topDiametr, BottomDiameter = bottomDiametr, WidthCount = widthCount, HeightCount = heightCount }; var newSection = new SectionTemplate(new RectGeometryLogic(template)).GetCrossSection(); var calculator = newSection.SectionRepository.CalculatorsList[0] as IForceCalculator; calculator.CompressedMember.Buckling = isBuckling; //Act calculator.Run(); var result = calculator.Result as IForcesResults; //Assert Assert.IsNotNull(result); Assert.True(calcResult == result.IsValid); Assert.True(firstForceResult == result.ForcesResultList[0].IsValid); } [TestCase(0.4d, 0.6d, 0.012d, 0.025d, 2, 2, 0d, 0d, 0d)] public void Run_ShouldPassPrestrain(double width, double height, double topDiametr, double bottomDiametr, int widthCount, int heightCount, double expectedKx, double expectedKy, double expectedEpsZ) { //Arrange var template = new RectangleBeamTemplate(width, height) { TopDiameter = topDiametr, BottomDiameter = bottomDiametr, WidthCount = widthCount, HeightCount = heightCount }; var newSection = new SectionTemplate(new RectGeometryLogic(template)).GetCrossSection(); var calculator = newSection.SectionRepository.CalculatorsList[0] as IForceCalculator; calculator.CompressedMember.Buckling = false; calculator.Run(); var ndmPrimitives = newSection.SectionRepository.Primitives; var result = calculator.Result as IForcesResults; var strainMatrix = result.ForcesResultList[0].LoaderResults.StrainMatrix; var source = TupleConverter.ConvertToStrainTuple(strainMatrix); //Act foreach (var item in ndmPrimitives) { ForceTupleService.CopyProperties(source, item.AutoPrestrain); } calculator.Run(); var result2 = calculator.Result as IForcesResults; //Assert Assert.IsNotNull(result2); Assert.IsTrue(result2.IsValid); var strainMatrix2 = result2.ForcesResultList[0].LoaderResults.StrainMatrix; var kx = strainMatrix2.Kx; var ky = strainMatrix2.Ky; var epsz = strainMatrix2.EpsZ; Assert.AreEqual(expectedKx, kx, 1e-10); Assert.AreEqual(expectedKy, ky, 1e-10); Assert.AreEqual(expectedEpsZ, epsz, 1e-10); } } }