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Improved numerical dissipation for time integration algorithms in structural dynamics
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1977
Year
Numerical AnalysisEngineeringStructural DynamicsMechanical EngineeringStructural OptimizationStabilityNumerical ComputationNumerical SimulationNew MethodsNumerical StabilityStructural DynamicBoundary Element MethodStructural VibrationImproved Numerical DissipationDynamic AnalysisNumerical Method For Partial Differential EquationFinite Element MethodNew FamilyNumerical TreatmentStructural MechanicsNewmark Family
Abstract A new family of unconditionally stable one‐step methods for the direct integration of the equations of structural dynamics is introduced and is shown to possess improved algorithmic damping properties which can be continuously controlled. The new methods are compared with members of the Newmark family, and the Houbolt and Wilson methods.
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