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pro vyhledávání: '"KEMPF, Daniel"'
Autor:
Kempf, Daniel, Kurz, Marius, Blind, Marcel, Kopper, Patrick, Offenhäuser, Philipp, Schwarz, Anna, Starr, Spencer, Keim, Jens, Beck, Andrea
Publikováno v:
Computer Physics Communications 306 (2025) 109388
This work presents GALAEXI as a novel, energy-efficient flow solver for the simulation of compressible flows on unstructured meshes leveraging the parallel computing power of modern Graphics Processing Units (GPUs). GALAEXI implements the high-order
Externí odkaz:
http://arxiv.org/abs/2404.12703
Autor:
Blind, Marcel, Gao, Min, Kempf, Daniel, Kopper, Patrick, Kurz, Marius, Schwarz, Anna, Beck, Andrea
Modern high-order discretizations bear considerable potential for the exascale era due to their high fidelity and the high, local computational load that allows for computational efficiency in massively parallel simulations. To this end, the disconti
Externí odkaz:
http://arxiv.org/abs/2306.12891
Autor:
Kurz, Marius, Kempf, Daniel, Blind, Marcel P., Kopper, Patrick, Offenhäuser, Philipp, Schwarz, Anna, Starr, Spencer, Keim, Jens, Beck, Andrea
Publikováno v:
In Computer Physics Communications January 2025 306
Autor:
Dürrwächter, Jakob, Kurz, Marius, Kopper, Patrick, Kempf, Daniel, Munz, Claus-Dieter, Beck, Andrea
Publikováno v:
Computers & Fluids 217 (2021) 104825
Sliding meshes are a powerful method to treat deformed domains in computational fluid dynamics, where different parts of the domain are in relative motion. In this paper, we present an efficient implementation of a sliding mesh method into a disconti
Externí odkaz:
http://arxiv.org/abs/2008.04356
Autor:
Dürrwächter, Jakob, Kurz, Marius, Kopper, Patrick, Kempf, Daniel, Munz, Claus-Dieter, Beck, Andrea
Publikováno v:
In Computers and Fluids 15 March 2021 217
Publikováno v:
In International Journal of Heat and Fluid Flow October 2019 79
Autor:
Kempf Daniel, Munz Claus-Dieter
Publikováno v:
Acta Acustica, Vol 6, p 39 (2022)
We present the extension of a discontinuous Galerkin framework to zonal direct-hybrid aeroacoustic simulations. This extension provides the ability to simultaneously perform a zonal large eddy simulation (LES), solving the compressible Navier–Stoke
Externí odkaz:
https://doaj.org/article/dd62579edc294b318ca847dfc57318a9
Autor:
Böttger, David, González, Germán, Geiser, Alexander, Kempf, Daniel, Lanza, Gisela, Schulze, Volker, Wolter, Bernd
Publikováno v:
Production Engineering (09446524); Apr2024, Vol. 18 Issue 2, p197-206, 10p
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Erosion and fouling of engine blades and subsequent performance degradation due to particle-laden flows pose a complex multiscale and multiphysics problem for CFD simulation. This work presents a framework for turbomachinery simulations which predict
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::a0e2495660fd4da9ba4c41cba0e5dfca