TY - JOUR
T1 - Effect of casing treatment to switch the type of instability inception in a high-speed axial compressor
AU - Pan, Tianyu
AU - Wu, Wenqian
AU - Li, Qiushi
N1 - Publisher Copyright:
© 2021 Elsevier Masson SAS
PY - 2021/8
Y1 - 2021/8
N2 - Flow instability phenomena, such as surge and rotating stall, limit the operating range of compressors. Casing treatment is a commonly used technique to extend the operating range, and some corresponding physical explanations have been proposed for the effects of casing treatment on the flow field in compressors. While there is also a situation that a casing treatment that is effective for one compressor may be useless for another, as a result, which limits the practical application of casing treatments. Based on the knowledge that the radial distribution of blade loading has a great influence on the type of instability inception, a hypothesis is put forward: casing treatment could change the type of instability inception by altering the loading distribution, and the resulting influence on the occurrence of instability may be one of the reasons to explain some unsuccessful tests of casing treatment. This hypothesis is then verified experimentally and numerically in a transonic axial flow compressor operating at a specific speed where the loading of both rotor tip and stator hub is close to each critical value. The results present that casing treatment can alter the type of instability inception by redistributing the blade loading, and thus leads to an earlier part-span stall in the hub region for this compressor. The main concluding remarks in this paper could be practically beneficial for the design of casing treatment in compressors.
AB - Flow instability phenomena, such as surge and rotating stall, limit the operating range of compressors. Casing treatment is a commonly used technique to extend the operating range, and some corresponding physical explanations have been proposed for the effects of casing treatment on the flow field in compressors. While there is also a situation that a casing treatment that is effective for one compressor may be useless for another, as a result, which limits the practical application of casing treatments. Based on the knowledge that the radial distribution of blade loading has a great influence on the type of instability inception, a hypothesis is put forward: casing treatment could change the type of instability inception by altering the loading distribution, and the resulting influence on the occurrence of instability may be one of the reasons to explain some unsuccessful tests of casing treatment. This hypothesis is then verified experimentally and numerically in a transonic axial flow compressor operating at a specific speed where the loading of both rotor tip and stator hub is close to each critical value. The results present that casing treatment can alter the type of instability inception by redistributing the blade loading, and thus leads to an earlier part-span stall in the hub region for this compressor. The main concluding remarks in this paper could be practically beneficial for the design of casing treatment in compressors.
KW - Blade loading distribution
KW - Casing treatment
KW - High-speed axial compressor
KW - Instability inception
UR - https://www.scopus.com/pages/publications/85105554203
U2 - 10.1016/j.ast.2021.106801
DO - 10.1016/j.ast.2021.106801
M3 - 文章
AN - SCOPUS:85105554203
SN - 1270-9638
VL - 115
JO - Aerospace Science and Technology
JF - Aerospace Science and Technology
M1 - 106801
ER -