DocumentCode :
3593052
Title :
Detached Eddy Simulation and PIV validation of the flow in a compact return diffuser
Author :
Ling Zhou ; Weidong Shi ; Wei Li ; Ling Bai
Author_Institution :
Nat. Res. Center of Pumps, Jiangsu Univ., Zhenjiang, China
fYear :
2014
Firstpage :
1
Lastpage :
5
Abstract :
The internal flow fields in a compact return diffuser have been investigated both numerically and experimentally under multi-conditions. Three-dimensional unsteady simulations are solved on high-quality structured grids with the Detached Eddy Simulation (DES) model by using the Computational Fluid Dynamics (CFD) code ANSYSFluent. Furthermore, a special Particle Image Velocimetry (PIV) test rig is designed, and the two-dimensional PIV measurements are successfully conducted in the diffuser midplane to capture the complex flow and to validate the CFD results. The analysis of the obtained results has been focused on the flow structure in diffuser, especially under part-load conditions. In addition, the comparison between CFD and PIV results has also been carried out. The vortex and recirculation flow patterns in diffuser are captured and analyzed accordingly. Strong flow separation and back flow appeared at the part-load flow rates. Under the design and over-load conditions, the flow fields in diffuser are uniform and an accepted agreement is presented between CFD and PIV results.
Keywords :
computational fluid dynamics; flow instability; flow measurement; flow separation; flow simulation; vortices; ANSYSFluent; DES model; PIV test rig; PIV validation; back flow; compact return diffuser; complex flow; computational fluid dynamic code; detached eddy simulation model; diffuser midplane; flow separation; flow structure; high-quality structured grids; internal flow field; over-load condition; part-load condition; part-load flow rate; particle image velocimetry test rig; recirculation flow pattern; three-dimensional unsteady simulation; two-dimensional PIV measurements; vortex flow pattern; Detached Eddy Simulation; Numerical Simulation; Particle Image Velocimetry; Return Diffuser;
fLanguage :
English
Publisher :
iet
Conference_Titel :
Fluid Machinery and Fluid Engineering, 2014 ISFMFE - 6th International Symposium on
Print_ISBN :
978-1-84919-907-0
Type :
conf
DOI :
10.1049/cp.2014.1150
Filename :
7124071
Link To Document :
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