B-spline convected particle domain interpolation method
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Publication:6545775
DOI10.1016/j.enganabound.2023.12.028MaRDI QIDQ6545775
Publication date: 29 May 2024
Published in: Engineering Analysis with Boundary Elements (Search for Journal in Brave)
B-spline basis functionsmaterial point methodquadrature errorcell-crossing instabilityconvected particle domain interpolation (CPDI) method
Cites Work
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- Material point method enhanced by modified gradient of shape function
- Energy conservation error in the material point method for solid mechanics
- Wave propagation in functionally graded materials by modified smoothed particle hydrodynamics (MSPH) method
- An evaluation of explicit time integration schemes for use with the generalized interpolation material point method
- FLIP: A method for adaptively zoned, particle-in-cell calculations of fluid flows in two dimensions
- A practical guide to splines
- Application of a particle-in-cell method to solid mechanics
- A particle method for history-dependent materials
- An efficient staggered grid material point method
- On the use of domain-based material point methods for problems involving large distortion
- An improved quadrature scheme in B-spline material point method for large-deformation problem analysis
- A total-Lagrangian material point method for solid mechanics problems involving large deformations
- A new method for material point method particle updates that reduces noise and enhances stability
- A convected-particle tetrahedron interpolation technique in the material-point method for the mesoscale modeling of ceramics
- An unconditionally stable, energy-momentum consistent implementation of the material-point method
- Improved convected particle domain interpolation method for coupled dynamic analysis of fully saturated porous media involving large deformation
- An investigation of stress inaccuracies and proposed solution in the material point method
- The imposition of nonconforming Neumann boundary condition in the material point method without boundary representation
- A convected particle domain interpolation technique to extend applicability of the material point method for problems involving massive deformations
- Second-order convected particle domain interpolation (CPDI2) with enrichment for weak discontinuities at material interfaces
- Controlling the onset of numerical fracture in parallelized implementations of the material point method (MPM) with convective particle domain interpolation (CPDI) domain scaling
- An energy-consistent material-point method for dynamic finite deformation plasticity
- Decoupling and balancing of space and time errors in the material point method (MPM)
- Analysis and reduction of quadrature errors in the material point method (MPM)
- Analysis and mitigation of spatial integration errors for the material point method
- Temporal and null-space filter for the material point method
- Enhancement of the material point method using B-spline basis functions
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