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Jianjun Xiao, Jack Travis, Peter Royl, Gottfried Necker, Anatoly Svishchev, Thomas Jordan

GASFLOW-MPI: A Scalable Computational Fluid Dynamics Code for Gases, Aerosols and Combustion. Band 1 (Theory and Computational Model (Revision 1.0).

(KIT Scientific Reports ; 7710)

AutorXiao, Jianjun ; Travis, Jack ; Royl, Peter ; Necker, Gottfried ; Svishchev, Anatoly ; Jordan, Thomas

VerlagKIT Scientific Publishing, Karlsruhe

ISBN9783731504481

UmfangXV, 99 S.

Veröffentlicht
am:
06.04.2016

Erscheinungs-
jahr
2016

VerfügbarkeitAktiv

Downloads:

Für Zitate bitte die folgende URL verwenden:
http://dx.doi.org/10.5445/KSP/1000050393

Abstract

Karlsruhe Institute of Technology (KIT) is developing the parallel computational fluid dynamics code GASFLOW-MPI as a best-estimate tool for predicting transport, mixing, and combustion of hydrogen and other gases in nuclear reactor containments and other facility buildings. GASFLOW-MPI is a finite-volume code based on proven computational fluid dynamics methodology that solves the compressible Navier-Stokes equations for three-dimensional volumes in Cartesian or cylindrical coordinates.