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Study on flow fields in high specific speed centrifugal compressor with unpinched vaneless diffuser

机译:无叶扩压器高比转速离心压缩机的流场研究

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Performance of centrifugal compressors strongly depends on their internal flow fields. CFD has become indispensable tool for getting the information about flow fields in centrifugal compressors. CFD codes are usually validated by some representative data or compared with calculated results by other CFD codes, in order to ensure their accuracies. However, learning their accuracies for all types of centrifugal compressor’s specifications requires continuous works that compare experimental data obtained in developmental processes of various types of centrifugal compressors with CFD results. A prediction of a performance and a flow field of a centrifugal compressor by CFD is relatively accurate when the impact of separation and secondary flow on that flow field is weak, i.e. near design condition. Centrifugal compressors are deemed to have a wide operating range alongside high efficiencies at design points. Hence the prediction accuracy of CFD at off design conditions, where the impacts of separation and secondary flow on the flow field are strong, is critical for the design of the centrifugal compressors. This study therefore investigated the prediction accuracy of CFD using a centrifugal compressor whose geometry was intentionally changed to have a distorted flow field over a whole operating range, i.e. from choke to surge.
机译:离心压缩机的性能在很大程度上取决于其内部流场。 CFD已成为获取有关离心压缩机流场信息的必不可少的工具。 CFD代码通常由一些代表性数据验证或与其他CFD代码的计算结果进行比较,以确保其准确性。但是,要了解它们对所有类型的离心压缩机规格的精度,都需要进行连续的工作,将在各种类型的离心压缩机的开发过程中获得的实验数据与CFD结果进行比较。当分离和二次流对该流场的影响较弱时,即接近设计条件时,通过CFD对离心压缩机的性能和流场进行的预测相对准确。离心压缩机被认为具有宽广的工作范围以及高效率的设计点。因此,在分离条件和二次流对流场的影响很大的非设计条件下,CFD的预测精度对于离心压缩机的设计至关重要。因此,这项研究调查了使用离心压缩机的CFD的预测精度,该离心压缩机的几何形状被故意更改为在整个工作范围内(即从节流阀到喘振阀)都具有扭曲的流场。

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