Files
StructureHelper/StructureHelperLogics/Models/BeamShears/Logics/StirrupByRebarStrengthLogic.cs
2025-05-25 20:51:30 +05:00

75 lines
3.3 KiB
C#

using StructureHelperCommon.Infrastructures.Interfaces;
using StructureHelperCommon.Models;
using StructureHelperCommon.Models.Forces;
//Copyright (c) 2025 Redikultsev Evgeny, Ekaterinburg, Russia
//All rights reserved.
namespace StructureHelperLogics.Models.BeamShears.Logics
{
public class StirrupByRebarStrengthLogic : IBeamShearStrenghLogic
{
private IStirrupEffectiveness stirrupEffectiveness;
private IStirrupByRebar stirrupByRebar;
private IInclinedSection inclinedSection;
private readonly IForceTuple forceTuple;
private StirrupByDensityStrengthLogic stirrupDensityStrengthLogic;
private IConvertStrategy<IStirrupByDensity, IStirrupByRebar> convertStrategy;
public IShiftTraceLogger? TraceLogger { get; set; }
public StirrupByRebarStrengthLogic(
IStirrupEffectiveness stirrupEffectiveness,
IStirrupByRebar stirrupByRebar,
IInclinedSection inclinedSection,
IForceTuple forceTuple,
StirrupByDensityStrengthLogic stirrupDensityStrengthLogic,
IConvertStrategy<IStirrupByDensity, IStirrupByRebar> convertStrategy,
IShiftTraceLogger? traceLogger)
{
this.stirrupEffectiveness = stirrupEffectiveness;
this.stirrupByRebar = stirrupByRebar;
this.inclinedSection = inclinedSection;
this.forceTuple = forceTuple;
this.stirrupDensityStrengthLogic = stirrupDensityStrengthLogic;
this.convertStrategy = convertStrategy;
TraceLogger = traceLogger;
}
public StirrupByRebarStrengthLogic(
IStirrupEffectiveness stirrupEffectiveness,
IStirrupByRebar stirrupByRebar,
IInclinedSection inclinedSection,
IForceTuple forceTuple,
IShiftTraceLogger? traceLogger)
{
this.stirrupEffectiveness = stirrupEffectiveness;
this.stirrupByRebar = stirrupByRebar;
this.inclinedSection = inclinedSection;
this.forceTuple = forceTuple;
TraceLogger = traceLogger;
}
public double GetShearStrength()
{
InitializeStrategies();
double maxSpacingRatio = inclinedSection.ConcreteTensionStrength * inclinedSection.WebWidth * inclinedSection.EffectiveDepth / forceTuple.Qy;
maxSpacingRatio = Math.Min(maxSpacingRatio, 0.5);
double maxStirrupSpacingByEffectibeDepth = maxSpacingRatio * inclinedSection.EffectiveDepth;
if (stirrupByRebar.Spacing > maxStirrupSpacingByEffectibeDepth)
{
TraceLogger?.AddMessage($"Stirrup spacing S = {stirrupByRebar.Spacing}(m) is greater than max stirrup spacing Smax = {maxStirrupSpacingByEffectibeDepth}(m), stirrups are ignored", TraceLogStatuses.Warning);
return 0;
}
double shearStrength = stirrupDensityStrengthLogic.GetShearStrength();
return shearStrength;
}
private void InitializeStrategies()
{
convertStrategy ??= new StirrupByRebarToDensityConvertStrategy(TraceLogger);
IStirrupByDensity stirrupByDensity = convertStrategy.Convert(stirrupByRebar);
stirrupDensityStrengthLogic ??= new(stirrupEffectiveness, stirrupByDensity, inclinedSection, TraceLogger);
}
}
}