Pages that link to "Item:Q1727535"
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The following pages link to Numerical interaction of boundary waves with perfectly matched layers in two space dimensional elastic waveguides (Q1727535):
Displaying 18 items.
- Back-propagating modes in elastic logging-while-drilling collars and their effect on PML stability (Q316394) (← links)
- A 2.5D boundary element formulation for modeling damped waves in arbitrary cross-section waveguides and cavities (Q347900) (← links)
- Absorbing boundary conditions for solid waveguides (Q366683) (← links)
- Guided elastic waves and perfectly matched layers (Q661560) (← links)
- Asymptotic solutions of the leaky modes and PML modes in a pekeris waveguide (Q661594) (← links)
- Unsplit perfectly matched layer absorbing boundary conditions for second-order poroelastic wave equations (Q781436) (← links)
- Numerical treatment of two-dimensional interfaces for acoustic and elastic waves. (Q1428654) (← links)
- On the use of perfectly matched layers in the presence of long or backward propagating guided elastic waves (Q1727515) (← links)
- Finite element computation of trapped and leaky elastic waves in open stratified waveguides (Q1727628) (← links)
- A facile method to realize perfectly matched layers for elastic waves (Q1727636) (← links)
- Root-finding absorbing boundary conditions for scalar and elastic waves in infinite media (Q1986908) (← links)
- A local collocation method to construct Dirichlet-type absorbing boundary conditions for transient scalar wave propagation problems (Q2173650) (← links)
- Discontinuous Galerkin difference methods for symmetric hyperbolic systems (Q2291876) (← links)
- The double absorbing boundary method for a class of anisotropic elastic media (Q2308901) (← links)
- Local Dirichlet-type absorbing boundary conditions for transient elastic wave propagation problems (Q2310268) (← links)
- (Q4522367) (← links)
- Development of engineering approaches to the study of interference wave fields excited in packets of thin elastic layers. II: Numerical methods for evaluating wave fields. A brief review of the results obtained (Q5941940) (← links)
- Consistent transmitting boundaries for <scp>time‐domain</scp> analyses of wave propagation in layered anisotropic waveguides (Q6071385) (← links)