In this work the three dimensional compressible moist atmospheric model ASAMgpu is presented. The calculations are done using graphics processing units (GPUs). To ensure platform independence OpenGL and GLSL are used, with that the model runs on any hardware supporting fragment shaders. The MPICH2 library enables interprocess communication allowing the usage of more than one GPU through domain decomposition. Time integration is done with an explicit three step Runge-Kutta scheme with a time-splitting algorithm for the acoustic waves. The results for four test cases are shown in this paper. A rising dry heat bubble, a cold bubble induced density flow, a rising moist heat bubble in a saturated environment, and a DYCOMS-II case
Environmental models are simplified representations of an object or a process [1]. These models pro...
There is a growing need for ever more accurate climate and weather simulations to be delivered in sh...
Atmospheric models are a representation of dynamical, physical, chemical, dynamical, and radiative ...
In this work the three dimensional compressible moist atmospheric model ASAMgpu is presented. The ca...
Die vorliegende Arbeit beschreibt die Entwicklung des hochauflösenden Atmosphärenmodells ASAMgpu. Da...
The representation of moist convection in climate models represents a major challenge, due to the sm...
Classical numerical models for the global atmosphere, as used for numerical weather forecasting or c...
The article of record as published may be found at http://dx.doi.org/10.1177/1094342017694427We pres...
We present a GPU accelerated nodal discontinuous Galerkin method for the solution of the three dimen...
The paper presents a simulation and rendering model of three dimensional covective cloud evolution. ...
AbstractThe increasing computing power of graphics processing units (GPU) has motivated the use of G...
A recent breakthrough in high-performance computing is the application of general-purpose graphics p...
This thesis documents the hydrodynamics code Cholla and a numerical study of multiphase galactic win...
AbstractNumerical weather prediction is one of the major applications in high performance computing ...
In this work, the fully compressible, three-dimensional, nonhydrostatic atmospheric model called All...
Environmental models are simplified representations of an object or a process [1]. These models pro...
There is a growing need for ever more accurate climate and weather simulations to be delivered in sh...
Atmospheric models are a representation of dynamical, physical, chemical, dynamical, and radiative ...
In this work the three dimensional compressible moist atmospheric model ASAMgpu is presented. The ca...
Die vorliegende Arbeit beschreibt die Entwicklung des hochauflösenden Atmosphärenmodells ASAMgpu. Da...
The representation of moist convection in climate models represents a major challenge, due to the sm...
Classical numerical models for the global atmosphere, as used for numerical weather forecasting or c...
The article of record as published may be found at http://dx.doi.org/10.1177/1094342017694427We pres...
We present a GPU accelerated nodal discontinuous Galerkin method for the solution of the three dimen...
The paper presents a simulation and rendering model of three dimensional covective cloud evolution. ...
AbstractThe increasing computing power of graphics processing units (GPU) has motivated the use of G...
A recent breakthrough in high-performance computing is the application of general-purpose graphics p...
This thesis documents the hydrodynamics code Cholla and a numerical study of multiphase galactic win...
AbstractNumerical weather prediction is one of the major applications in high performance computing ...
In this work, the fully compressible, three-dimensional, nonhydrostatic atmospheric model called All...
Environmental models are simplified representations of an object or a process [1]. These models pro...
There is a growing need for ever more accurate climate and weather simulations to be delivered in sh...
Atmospheric models are a representation of dynamical, physical, chemical, dynamical, and radiative ...