An experimental investigation of rotating stall margin improvement with unsteady casing treatments
Xiaofeng Sun
Abstract
Xiaofeng Sun
Abstract
Casing treatments are widely used to enhance the stall margin of fans or compressors of aircraft engines.However,the existing design of casing treatment is generally on the basis of trial and error method and its application always results in efficiency loss of fans or compressors.So,how to understand the mechanism of stall margin improvement with casing treatments and how to design better casing treatments have long been an area of vigorous research activity.Based on the knowledge of the unsteady characteristics caused by casing treatment,it is verified that recessed casing treatment can be modeled as a wall boundary condition,which can be calculated by means of vortex sound theory.In the present work, a series of experimental investigations were conducted with emphasis on the effect of unsteady casing treatments on the stall margin and efficiency of three different low speed fan/compressor facilities.The results show that the unsteady casing treatments do improve the stall margin without incurring recognizable efficiency loss of the concerned fan/compressor.
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Casing treatments are widely used to enhance the stall margin of fans or compressors of aircraft engines.However,the existing design of casing treatment is generally on the basis of trial and error method and its application always results in efficiency loss of fans or compressors.So,how to understand the mechanism of stall margin improvement with casing treatments and how to design better casing treatments have long been an area of vigorous research activity.Based on the knowledge of the unsteady characteristics caused by casing treatment,it is verified that recessed casing treatment can be modeled as a wall boundary condition,which can be calculated by means of vortex sound theory.In the present work, a series of experimental investigations were conducted with emphasis on the effect of unsteady casing treatments on the stall margin and efficiency of three different low speed fan/compressor facilities.The results show that the unsteady casing treatments do improve the stall margin without incurring recognizable efficiency loss of the concerned fan/compressor.
Key concepts: Casing, Stall (fluid mechanics), Gas compressor, Axial compressor, Margin (machine learning), Engineering, Geology, Mechanical engineering