Numerical investigation of the potential of multi-row optimization of an axial compressor stage with a tandem vane stator

被引:0
|
作者
Giannini, Samuele [1 ]
Straccia, Mattia [1 ]
von Jeinsen, Philipp [1 ]
Banik, Sagnik [1 ]
Guemmer, Volker
机构
[1] Tech Univ Munich, Chair Turbomachinery & Flight Prop, D-85748 Garching, Bavaria, Germany
关键词
compressor aerodynamic design; turbomachinery blading design; CFD; tandem vanes; optimization; FLOW COMPRESSOR;
D O I
10.33737/jgpps/187746
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
In the published literature, there are a few examples of axial compressors designed with tandem vanes, aimed to increase the maximum loading of the machine. It appears that the advantages of employing tandem vanes are overruled by additional problems arising in real compressor applications. Phenomena such as the increase in endwall and secondary losses prevent tandem vanes from being widely employed in current commercial engine designs. In this work, the airfoil geometries of the IGV, rotor, and the shrouded tandem stator of a highly loaded axial compressor stage are improved in a combined optimization, using the potential of this configur- fi gur- ation in a one-and-a-half-stage environment. The redesigned compressor stage shows performance improvements in the total pressure ratio of each vane and isentropic efficiency fi ciency of the one-and-a-half-stage. The optimized stage is extended to the three-and-a-half-stage configuration fi guration of the machine, confirming fi rming and extending the benefits fi ts of the optimized geometries with an increase in stage work coefficient fi cient of 3% and in stage isentropic efficiency fi ciency of up to 0.76%. Starting from these results, the authors widen the content of this work to provide a better understanding and a solid background in the design of axial compressor stages with tandem vanes, highlighting their potential benefits fi ts in multi-stage environments.
引用
收藏
页码:282 / 294
页数:13
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