Co-simulation method for solver coupling with algebraic constraints incorporating relaxation techniques
DOI10.1007/s11044-015-9464-9zbMath1334.65123OpenAlexW1116666713MaRDI QIDQ255248
Pu Li, Daixing Lu, Bernhard Schweizer
Publication date: 9 March 2016
Published in: Multibody System Dynamics (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1007/s11044-015-9464-9
stabilityconvergencedifferential-algebraic equationmultibody systemalgebraic constraintsartificial oscillationco-simulationimplicitrelaxation techniquesemi-implicitsolver couplingsubcycling
Implicit ordinary differential equations, differential-algebraic equations (34A09) Stability and convergence of numerical methods for ordinary differential equations (65L20) Numerical methods for differential-algebraic equations (65L80) Dynamics of multibody systems (70E55)
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- Stabilized implicit co-simulation methods: solver coupling based on constitutive laws
- Coupled simulation of multibody and finite element systems: an efficient and robust semi-implicit coupling approach
- On the effect of multirate co-simulation techniques in the efficiency and accuracy of multibody system dynamics
- Efficiency and accuracy of fluid-structure interaction simulations using an implicit partitioned approach
- Stabilized index-2 co-simulation approach for solver coupling with algebraic constraints
- Automatic integration of Euler-Lagrange equations with constraints
- Multibody system dynamics: roots and perspectives
- Intelligent simulation of multibody dynamics: Space-state and descriptor methods in sequential and parallel computing environments
- Modular simulation in multibody system dynamics
- A hybrid parallelizable low-order algorithm for dynamics of multi-rigid-body systems. I: Chain systems.
- A partial velocity approach to subcycling structural dynamics.
- Computational flexible multibody dynamics. A differential-algebraic approach
- A study of the stability of subcycling algorithms in structural dynamics
- A Memory Based Communication in the Co-simulation of Multibody and Finite Element Codes for Pantograph-Catenary Interaction Simulation
- Analysis and Acceleration of a Fluid-Structure Interaction Coupling Scheme
- Convergence Results for a Coordinate Projection Method Applied to Mechanical Systems with Algebraic Constraints
- Predictor/corrector co-simulation approaches for solver coupling with algebraic constraints
- Extrapolation integrators for constrained multibody systems
- Analysis and implementation of a new constant acceleration subcycling algorithm
- Coupled simulation of flow-structure interaction in turbomachinery
- Two Methods of Simulator Coupling
- An order n formulation for the motion simulation of general multi-rigid-body tree systems
- Solving Ordinary Differential Equations II
- Implicit co‐simulation methods: Stability and convergence analysis for solver coupling approaches with algebraic constraints