Pages that link to "Item:Q1656005"
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The following pages link to Stability and accuracy improvement for explicit formulation of time domain acoustic problems (Q1656005):
Displaying 14 items.
- On the stability of time-domain integral equations for acoustic wave propagation (Q262104) (← links)
- Dispersion analysis for acoustic problems using the point interpolation method (Q1658967) (← links)
- Optimal balance between mass and smoothed stiffness in simulation of acoustic problems (Q1985073) (← links)
- A coupling scheme based on the partition of unity finite element method-finite element method for 3D vibro-acoustic problems (Q2085862) (← links)
- Analysis of the interior acoustic wave propagation problems using the modified radial point interpolation method (M-RPIM) (Q2127999) (← links)
- Analysis of transient wave propagation in inhomogeneous media using edge-based gradient smoothing technique and Bathe time integration method (Q2209395) (← links)
- Transcranial stimulation analysis using the smoothed finite element method (Q2670368) (← links)
- Dispersion Reduction for the Wave Propagation Problems Using a Coupled “FE-Meshfree” Triangular Element (Q4987599) (← links)
- Contact Analysis of Functionally Graded Materials Using Smoothed Finite Element Methods (Q5111966) (← links)
- STABLE MATCHED LAYER FOR THE ACOUSTIC CONSERVATION EQUATIONS IN THE TIME DOMAIN (Q5169369) (← links)
- A Stabilization Method of F-barES-FEM-T4 for Dynamic Explicit Analysis of Nearly Incompressible Materials (Q5193342) (← links)
- An Efficient Cell-Based Smoothed Finite Element Method for Free Vibrations of Magneto-Electro-Elastic Beams (Q5207368) (← links)
- A robust time-space formulation for large-scale scalar wave problems using exponential basis functions (Q6569278) (← links)
- Study on acoustic propagation problems based on the two-dimensional moving virtual node technique of the CSRPIM (Q6583862) (← links)