A Computational Fluid Dynamics Study of Circumferential Groove Casing Treatment in a Transonic Axial Compressor

Author:

Chen Haixin1,Huang Xudong,Shi Ke,Fu Song2,Ross Mark,Bennington Matthew A.,Cameron Joshua D.,Morris Scott C.3,McNulty Scott,Wadia Aspi4

Affiliation:

1. e-mail:

2. School of Aerospace Engineering, Tsinghua University, Beijing 100084, China

3. Department of Mechanical and Aerospace Engineering, University of Notre Dame, Notre Dame, IN 46556

4. GE Aviation, Cincinnati, OH 45215

Abstract

Numerical investigations were conducted to predict the performance of a transonic axial compressor rotor with circumferential groove casing treatment. The Notre Dame Transonic Axial Compressor (ND-TAC) was simulated at Tsinghua University with an in-house computational fluid dynamics (CFD) code (NSAWET) for this work. Experimental data from the ND-TAC were used to define the geometry, boundary conditions, and data sampling method for the numerical simulation. These efforts, combined with several unique simulation approaches, such as nonmatched grid boundary technology to treat the periodic boundaries and interfaces between groove grids and the passage grid, resulted in good agreement between the numerical and experimental results for overall compressor performance and radial profiles of exit total pressure. Efforts were made to study blade level flow mechanisms to determine how the casing treatment impacts the compressor's stall margin and performance. The flow structures in the passage, the tip gap, and the grooves as well as their mutual interactions were plotted and analyzed. The flow and momentum transport across the tip gap in the smooth wall and the casing treatment configurations were quantitatively compared.

Publisher

ASME International

Subject

Mechanical Engineering

Reference17 articles.

1. Breakdown of Tip Leakage Vortices in Compressors at Flow Conditions Close to Stall,1997

2. Some Aspects of Tip Vortex Behavior in a Transonic Turbocompressor,2003

3. Numerical Analysis of Tip Leakage Flow Field in a Transonic Axial Compressor Rotor,2003

4. Role of Tip-Leakage Vortices and Passage Shock in Stall Inception in a Swept Transonic Compressor Rotor,2004

5. CFD Investigation on Stall Mechanisms and Casing Treatment of a Transonic Compressor,2006

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