International audienceThe numerical analysis of elastic wave propagation in unbounded media may be difficult due to spurious waves reflected at the model artificial boundaries. This point is critical for the analysis of wave propagation in heterogeneous or layered solids. Various techniques such as Absorbing Boundary Conditions, infinite elements or Absorbing Boundary Layers (e.g. Perfectly Matched Layers) lead to an important reduction of such spurious reflections. In this paper, a simple absorbing layer method is proposed: it is based on a Rayleigh/Caughey damping formulation which is often already available in existing Finite Element softwares. The principle of the Caughey Absorbing Layer Method is first presented (including a rheologica...
The use of perfectly matched layers (PML) has recently been introduced by Berenger as a material abs...
As an absorbing boundary in infinite domain problems, the perfectly matched layer (PML) is introduce...
International audienceWhen applied to wave propagation modeling in anisotropic media, Perfectly Matc...
International audienceThe numerical analysis of elastic wave propagation in unbounded media may be d...
International audienceVarious techniques are proposed for reproducing the elastic wave propagation i...
The presence of wave motion is the defining feature in many fields of application,such as electro-ma...
Summary. For finite element analysis of wave propagation in an elastic medium surrounded by an adjac...
International audienceSeismic wave modeling requires using adapted boundary conditions to simulate i...
Boundary conditions are derived for numerical wave simulation that minimize artificial reflections f...
The purpose of this thesis is to propose novel designs and formulations of different absorbing layer...
High-order absorbing boundary conditions (ABC) and perfectly matched layers (PML) are two powerful m...
Boundary conditions are derived for numerical wave simulations that minimize artificial reflections ...
The author describes the application of certain conditions that deprive the boundaries of certain ar...
The use of perfectly matched layers (PML) has recently been introduced by Berenger as a material abs...
International audienceThis paper presents a benchmark for three-dimensional explicit asynchronous ab...
The use of perfectly matched layers (PML) has recently been introduced by Berenger as a material abs...
As an absorbing boundary in infinite domain problems, the perfectly matched layer (PML) is introduce...
International audienceWhen applied to wave propagation modeling in anisotropic media, Perfectly Matc...
International audienceThe numerical analysis of elastic wave propagation in unbounded media may be d...
International audienceVarious techniques are proposed for reproducing the elastic wave propagation i...
The presence of wave motion is the defining feature in many fields of application,such as electro-ma...
Summary. For finite element analysis of wave propagation in an elastic medium surrounded by an adjac...
International audienceSeismic wave modeling requires using adapted boundary conditions to simulate i...
Boundary conditions are derived for numerical wave simulation that minimize artificial reflections f...
The purpose of this thesis is to propose novel designs and formulations of different absorbing layer...
High-order absorbing boundary conditions (ABC) and perfectly matched layers (PML) are two powerful m...
Boundary conditions are derived for numerical wave simulations that minimize artificial reflections ...
The author describes the application of certain conditions that deprive the boundaries of certain ar...
The use of perfectly matched layers (PML) has recently been introduced by Berenger as a material abs...
International audienceThis paper presents a benchmark for three-dimensional explicit asynchronous ab...
The use of perfectly matched layers (PML) has recently been introduced by Berenger as a material abs...
As an absorbing boundary in infinite domain problems, the perfectly matched layer (PML) is introduce...
International audienceWhen applied to wave propagation modeling in anisotropic media, Perfectly Matc...