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Numerical Optimization of a Vaned Shroud Design for Increased Operability Margin in Modern Centrifugal Compressors

机译:现代离心式压缩机增加操作余量的叶片式护罩设计的数值优化

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This paper describes the computational fluid dynamics (CFD) approach coupled with an automated grid generation technique utilized for the numerical optimization of a modern centrifugal compressor with an inducer vaned shroud for increased operability margin. The grid generation process was automated to permit rapid optimization of the impeller and vaned shroud geometry. A three-dimensional, viscous, steady flow, mixing-plane approach was utilized to numerically analyze the impeller and vaned shroud in a coupled fashion to capture the interaction effects. The numerical technique verifies the ability of the vane shroud to extend compressor surge margin at the part-speed operating condition, while maintaining acceptable high-speed performance. CFD analyses confirm that the aerodynamics of the vaned shroud match expectation, and are consistent with the mass-averaged compressor speedline characteristics generated from the CFD results.
机译:本文介绍了计算流体动力学(CFD)方法,并结合了自动网格生成技术,该技术用于对带有离心机导流罩的现代离心压缩机进行数值优化,以增加可操作性裕度。网格生成过程是自动化的,可以快速优化叶轮和带叶片的导流罩的几何形状。三维粘性粘滞稳定流混合平面方法用于以耦合方式对叶轮和叶片式导流罩进行数值分析,以捕获相互作用效应。数值技术验证了叶片护罩在部分速度工况下扩展压缩机喘振裕度的能力,同时保持了可接受的高速性能。 CFD分析证实,带叶片的导流罩的空气动力学特性符合预期,并且与CFD结果生成的质量平均压缩机速度线特性一致。

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