D Herrero-Pérez, PJM Castejón - Advances in Engineering Software, 2021 - Elsevier
This work presents a parallel implementation of density-based topology optimization using distributed GPU computing systems. The use of multiple GPU devices allows us accelerating …
We demonstrate a high-performance vendor-agnostic method for massively parallel solving of ensembles of ordinary differential equations (ODEs) and stochastic differential equations …
This paper discusses the main performance barriers for solving a large number of independent ordinary differential equation systems on processors (CPU) and graphics cards …
A fixed-point iteration technique is presented to handle the implicit nature of the governing equations of nonlinear surface mode oscillations of acoustically excited microbubbles. The …
F Hegedűs - Communications in Nonlinear Science and Numerical …, 2021 - Elsevier
Challenges and efficient solution techniques during the integration of a large number of independent ordinary differential equations (ODEs) using the massively parallel architecture …
A Weitzel, G Schaller, F Queisser, R Schützhold - Physical Review B, 2024 - APS
Langevin dynamics simulations are used to analyze the static and dynamic properties of an XY model adapted to dimers forming on Si (001) surfaces. The numerics utilize high …
Stars are known to form from dense, dusty clumps and cores of molecular clouds. However, there is no consensus on a theory that can predict the rate of star formation, its clustering …
In this paper, the performance characteristics of different solution techniques and program packages to solve a large number of independent ordinary differential equation systems is …