In modern physics it has become common to find the solution of a problem by solving numerically a set of PDEs. Whether solving them on a finite difference grid or by a finite element approach, the main calculations are often applied to a stencil structure. In the last decade it has become usual to work with so called big data problems where calculations are very heavy and accelerators and modern architectures are widely used. Although CPU and GPU clusters are often used to solve such problems, parallelisation of any calculation ideally starts from a single processor optimisation. Unfortunately, it is impossible to vectorise a stencil structured loop with high level instructions. In this paper we suggest a new approach to rearranging the dat...
<p>This work presents an implementation of elastic wave propagation using finite differences to mode...
The use of parallel computers makes it feasible to simulate elastic waves throughout large heterogen...
Finite element method (FEM) has been used for years for radiation problems in the field of electrom...
Finite difference methods for solving the wave equation more accurately capture the physics of waves...
Achieving maximum parallel performance on multi-core CPUs and many-core GPUs is a challenging task d...
Finite difference methods for solving the wave equation more accurately capture the physics of waves...
Abstract. Numerical simulation in exploration geophysics provides important insights into subsurface...
This project serves to apply numerical methods to obtain solutions for the wave equation. Paralleliz...
AbstractUnderstanding the wave propagation with respect to the structure of the Earth lies at the he...
Stencil computation (SC) is of critical importance for broad scientific and engineering applications...
AbstractWave form modeling is used in a vast number of applications. Therefore, different methods ha...
Acoustic wave propagation has been the preferred engine for geophysical exploration applications for...
International audienceWe present a parallel solver for wave propagation problems based on the higher...
<div><p>Recent developments in modern computational accelerators like Graphics Processing Units (GPU...
Summarization: Two finite-difference schemes for solving the elastic wave equation in heterogeneous ...
<p>This work presents an implementation of elastic wave propagation using finite differences to mode...
The use of parallel computers makes it feasible to simulate elastic waves throughout large heterogen...
Finite element method (FEM) has been used for years for radiation problems in the field of electrom...
Finite difference methods for solving the wave equation more accurately capture the physics of waves...
Achieving maximum parallel performance on multi-core CPUs and many-core GPUs is a challenging task d...
Finite difference methods for solving the wave equation more accurately capture the physics of waves...
Abstract. Numerical simulation in exploration geophysics provides important insights into subsurface...
This project serves to apply numerical methods to obtain solutions for the wave equation. Paralleliz...
AbstractUnderstanding the wave propagation with respect to the structure of the Earth lies at the he...
Stencil computation (SC) is of critical importance for broad scientific and engineering applications...
AbstractWave form modeling is used in a vast number of applications. Therefore, different methods ha...
Acoustic wave propagation has been the preferred engine for geophysical exploration applications for...
International audienceWe present a parallel solver for wave propagation problems based on the higher...
<div><p>Recent developments in modern computational accelerators like Graphics Processing Units (GPU...
Summarization: Two finite-difference schemes for solving the elastic wave equation in heterogeneous ...
<p>This work presents an implementation of elastic wave propagation using finite differences to mode...
The use of parallel computers makes it feasible to simulate elastic waves throughout large heterogen...
Finite element method (FEM) has been used for years for radiation problems in the field of electrom...