A new LBIE method for solving elastodynamic problems
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Publication:1944401
DOI10.1016/j.enganabound.2010.08.003zbMath1259.74094OpenAlexW2050721605MaRDI QIDQ1944401
Demosthenes Polyzos, Adélia Sequeira, Euripides J. Sellountos
Publication date: 25 March 2013
Published in: Engineering Analysis with Boundary Elements (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.enganabound.2010.08.003
meshless methodslocal boundary integral equation (LBIE)transient and frequency domain elastodynamic analysis
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Related Items (5)
A Runge-Kutta-Chebyshev SPH algorithm for elastodynamics ⋮ An accurate improved complex variable element-free method for numerical solutions of elastodynamic problems ⋮ Frequency domain analysis of elastic bounded domains using a new semi-analytical method ⋮ A simplified approach for imposing the boundary conditions in the local boundary integral equation method ⋮ Numerical simulation of structural dynamics using a high-order compact finite-difference scheme
Cites Work
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- A local boundary integral equation (LBIE) method in computational mechanics, and a meshless discretization approach
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- Admissible approximations for essential boundary conditions in the reproducing kernel particle method
- Numerical integration of singularities in meshless implementation of local boundary integral equations
- The local boundary integral equation (LBIE) and its meshless implementation for linear elasticity
- A meshless integral method based on regularized boundary integral equation
- A meshless local boundary integral equation method for solving transient elastodynamic problems
- A MLPG(LBIE) approach in combination with BEM
- Elastic transient analysis with MLPG(LBIE) method and local RBFs
- A Hybrid Multi-Region BEM / LBIE-RBF Velocity-Vorticity Scheme for the Two-Dimensional Navier-Stokes Equations
- A Local Hypersingular Boundary Integral Equation Method Using a Triangular Background Mesh
- A comparison study on different MLPG(LBIE) formulations
- Meshless local boundary integral equation method for 2D elastodynamic problems
- A MLPG(LBIE) numerical method for solving 2D incompressible and nearly incompressible elastostatic problems
- A Meshless Local Petrov-Galerkin (MLPG) Approach Based on the Regular Local Boundary Integral Equation for Linear Elasticity
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