DocumentCode
2011466
Title
Parallel computation for three-dimensional multi-stage turbomachinery flow simulation on PC cluster environment
Author
Lee, Lung-Cheng ; Shen, Cherng-Yeu ; Chen, Shih-Hsiung
Author_Institution
Nat. Center for High-Performance Comput., Hsinchu, Taiwan
Volume
2
fYear
2000
fDate
14-17 May 2000
Firstpage
1052
Abstract
The three-dimensional multi-stage turbomachinery flow simulation is calculated on the PC cluster environment in NCHC. The UTRC large-scale turbine is employed here as the baseline configuration. A compressible viscous finite volume algorithm solving Reynolds averaged Navier-Stokes equations with artificial dissipation terms similar to Jameson´s method is adopted circumferential average is performed between the interface of rotor and stator. The master/slave algorithm is employed for the parallel implementation, and a processor calculates a blade row. Three, five, seven and nine blade rows are used to demonstrate the performance of parallel computation on the PC cluster. Those results are shown that the performance is very well, especially for more blade rows, i.e., nine blade rows, have the super speedup efficiency.
Keywords
flow simulation; physics computing; workstation clusters; Jameson´s method; PC cluster; PC cluster environment; Reynolds averaged Navier-Stokes equations; artificial dissipation terms; baseline configuration; circumferential average; compressible viscous finite volume algorithm; large-scale turbine; master/slave algorithm; parallel computation; three-dimensional multi-stage turbomachinery flow simulation;
fLanguage
English
Publisher
ieee
Conference_Titel
High Performance Computing in the Asia-Pacific Region, 2000. Proceedings. The Fourth International Conference/Exhibition on
Conference_Location
Beijing, China
Print_ISBN
0-7695-0589-2
Type
conf
DOI
10.1109/HPC.2000.843601
Filename
843601
Link To Document