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@INPROCEEDINGS{Badwaik:1018068,
author = {Badwaik, Jayesh},
title = {{S}calable {L}attice {B}oltzmann {L}eaps to {E}xascale},
reportid = {FZJ-2023-04519},
year = {2023},
abstract = {Lattice Boltzmann methods (LBM) are trustworthy
alternatives to conventionalCFD, showing roughly an order of
magnitude performance advantage thanNavier-Stokes approaches
in comparable scenarios. The S CALABLE projectbrings
together industrial and academic partners to create a new
frameworkfor an industrial LBM-based computational fluid
dynamics (CFD) solver whichcan achieve high performance,
scalability, and energy efficiency.In the context of
EuroHPC, LBM is especially well suited to exploit
advancedsupercomputer architectures through vectorization,
accelerators, and massiveparallelization. To achieve its
goals, SCALABLE aims to transfer leading edgeperformance
technology between waLBerla and LaBS, thus breaking the
silosbetween the worlds of scientific computing and physical
flow modelling.},
month = {May},
date = {2023-05-23},
organization = {ISC High Performance 2024, Hamburg
(Germany), 23 May 2023 - 26 May 2023},
subtyp = {Other},
cin = {JSC},
cid = {I:(DE-Juel1)JSC-20090406},
pnm = {5112 - Cross-Domain Algorithms, Tools, Methods Labs (ATMLs)
and Research Groups (POF4-511) / SCALABLE - SCAlable LAttice
Boltzmann Leaps to Exascale (956000)},
pid = {G:(DE-HGF)POF4-5112 / G:(EU-Grant)956000},
typ = {PUB:(DE-HGF)24},
doi = {10.34734/FZJ-2023-04519},
url = {https://juser.fz-juelich.de/record/1018068},
}