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AERODYNAMICS OF COMPRESSOR CASING TREATMENT PART II: A QUASI-STEADY MODEL FOR CASING TREATMENT FLOWS

机译:压缩机套管处理的气动特性第二部分:套管处理流程的准稳态模型

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In order to predict more efficiently the flow in compressor with casing treatment in a integrated manner as well as to facilitate an integrated tool for the design optimization of casing treatment, a mathematical-physical quasi-steady model for the slot-type casing treatment flows were developed based on the understanding of the unsteady flow physics of the rotor-casing treatment combination. The new model has been coded up and validated against a slot-type casing treatment which is examined by experiment and unsteady RANS calculations in the companion paper Part I. The calculations using this model show an encouraging agreement with those obtained from measurements and unsteady RANS calculations, indicating the essence of the flow physics has been captured by the model. Although the model is based on the slot type casing treatment, the principle behind it is rather wide-catching and extensions to other types of casing/hub treatment can also be realized. Since the model equations for the casing treatment flow are solved in the same way as that for conventional steady flows, considerable amount of computer resources can be saved. This enables the model applicable in the current steady RANS-based design system, and overall assessments of a compressor with an applied casing treatment are readily achievable.
机译:为了更有效地预测带有套管处理方式的压缩机中的流量,并为集成式工具优化套管处理方法提供便利,我们针对槽型套管处理流量建立了数学物理准稳态模型。基于对转子-壳体处理组合的非稳态流动物理学的理解而开发的。新模型已经过编码并针对槽型套管处理进行了验证,该过程已在随附论文的第I部分中通过实验和非稳态RANS计算进行了检验。使用该模型的计算结果与从测量和非稳态RANS计算获得的结果令人鼓舞地达成一致,表明该模型已捕获了流动物理学的本质。尽管该模型基于槽型套管处理,但是其背后的原理相当广泛,并且还可以实现对其他类型的套管/集线器处理的扩展。由于套管处理流程的模型方程与常规稳定流程的求解方法相同,因此可以节省大量计算机资源。这使得该模型可适用于当前基于RANS的稳定设计系统,并且可以轻松地对采用外壳处理的压缩机进行总体评估。

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