A general convolutional version of perfectly matched layer (PML) formulation for second-order wave equations with displacement as the only unknown based on the coordinate stretching is proposed in this study, which overcomes the limitation of classical PML in splitting the displacement field and requires only minor modifications to existing finite element programs. The first contribution concerns the development of a robust and efficient finite element program QUAD-CPML based on QUAD4M capable of simulating wave propagation in an unbounded domain. The more efficient hybrid-stress finite element was incorporated into the program to reduce the number of iterations for the equivalent linear dynamic analysis and the total time for the direct...
The presence of wave motion is the defining feature in many fields of application,such as electro-ma...
This paper presents a framework for implementing a novel Perfectly Matching Layer and Infinite Eleme...
This dissertation is focused on creating the key ingredients of a numerical platform for reduced ord...
One approach to the numerical solution of a wave equation on an unbounded domain uses a bounded doma...
International audienceThis review article revisits and outlines the perfectly matched layer (PML) me...
Abstract: In the context of the numerical simulation of seismic wave propaga-tion, the perfectly mat...
The perfectly matched layer (PML) has been employed as a very efficient absorbing boundary condition...
Convolutional perfectly matched layer (CPML) models in the finite element time domain (FETD) can sav...
Convolutional perfectly matched layer (CPML) models in the finite element time domain (FETD) can sav...
As an absorbing boundary in infinite domain problems, the perfectly matched layer (PML) is introduce...
The perfectly matched layer is an efficient tool to simulate nonreflecting boundary condition at bou...
International audienceIn recent years, the application of time-domain adjoint methods to improve lar...
Thesis (M.S.)--University of Hawaii at Manoa, 2006.Includes bibliographical references (leaves 36-38...
The perfectly matched layer (PML) is a novel technique to simulate the absorption of waves in unboun...
Abstract: Unsplit convolutional perfectly matched layers (CPML) for the veloc-ity and stress formula...
The presence of wave motion is the defining feature in many fields of application,such as electro-ma...
This paper presents a framework for implementing a novel Perfectly Matching Layer and Infinite Eleme...
This dissertation is focused on creating the key ingredients of a numerical platform for reduced ord...
One approach to the numerical solution of a wave equation on an unbounded domain uses a bounded doma...
International audienceThis review article revisits and outlines the perfectly matched layer (PML) me...
Abstract: In the context of the numerical simulation of seismic wave propaga-tion, the perfectly mat...
The perfectly matched layer (PML) has been employed as a very efficient absorbing boundary condition...
Convolutional perfectly matched layer (CPML) models in the finite element time domain (FETD) can sav...
Convolutional perfectly matched layer (CPML) models in the finite element time domain (FETD) can sav...
As an absorbing boundary in infinite domain problems, the perfectly matched layer (PML) is introduce...
The perfectly matched layer is an efficient tool to simulate nonreflecting boundary condition at bou...
International audienceIn recent years, the application of time-domain adjoint methods to improve lar...
Thesis (M.S.)--University of Hawaii at Manoa, 2006.Includes bibliographical references (leaves 36-38...
The perfectly matched layer (PML) is a novel technique to simulate the absorption of waves in unboun...
Abstract: Unsplit convolutional perfectly matched layers (CPML) for the veloc-ity and stress formula...
The presence of wave motion is the defining feature in many fields of application,such as electro-ma...
This paper presents a framework for implementing a novel Perfectly Matching Layer and Infinite Eleme...
This dissertation is focused on creating the key ingredients of a numerical platform for reduced ord...