首页> 外文会议>ASME turbo expo: turbine technical conference and exposition >INFLUENCE OF CAVITY FLOWS MODELING ON CENTRIFUGAL COMPRESSOR STAGES PERFORMANCE PREDICTION ACROSS DIFFERENT FLOW COEFFICIENT IMPELLERS
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INFLUENCE OF CAVITY FLOWS MODELING ON CENTRIFUGAL COMPRESSOR STAGES PERFORMANCE PREDICTION ACROSS DIFFERENT FLOW COEFFICIENT IMPELLERS

机译:腔流模型对不同流量系数叶轮上离心压缩机级性能预测的影响

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Computational Fluid Dynamics (CFD) is becoming fundamental to predict turbomachinery performance. However, only using advanced numerical models coupled with high fidelity grid generation is possible to reach a very good matching with test data. In this regard, secondary flow modeling plays a critical role in the accuracy of performance prediction for centrifugal compressor stages. This study analyses the effects of cavity models on centrifugal compressor stages performance across the full range of impeller flow coefficients used in common industrial applications. Both bi-dimensional low flow coefficients with splitter and non splitter blades and three-dimensional high flow coefficients stages have been used as test cases to compare the numerical prediction with test data. Furthermore the effects of secondary flows modeling have been assessed when comparing detailed flow features with advanced experimental data both in terms of ID profiles and 2D maps. The effects of cavity flows modeling is growing, as expected, moving to very low flow coefficients, reaching several points of difference in efficiency calculation with respect to simpler models. Furthermore, the agreement with experimental data is very good both in terms of overall performance and detailed flow features. Finally, the high fidelity CFD is capable to give deep in-sides into the flow evolution inside the machine allowing aero designers to design centrifugal compressor stages with higher performance. It should be remarked here that a good matching of CFD prediction with test data is possible only by using high fidelity models.
机译:计算流体动力学(CFD)成为预测涡轮机械性能的基础。但是,只有将高级数值模型与高保真网格生成结合使用,才有可能与测试数据实现很好的匹配。在这方面,二次流建模在离心压缩机级性能预测的准确性中起着至关重要的作用。这项研究分析了在普通工业应用中使用的叶轮流量系数的整个范围内,腔体模型对离心压缩机级性能的影响。具有分离叶片和非分离叶片的二维低流量系数以及三维高流量系数级都已用作测试案例,以将数值预测与测试数据进行比较。此外,在比较详细的流量特征和高级实验数据(在ID轮廓和2D映射方面)时,已经评估了二次流建模的效果。空腔流动建模的影响正如预期的那样增长,已逐渐降低到非常低的流动系数,相对于较简单的模型,效率计算达到了几个不同点。此外,就整体性能和详细的流量特性而言,与实验数据的一致性非常好。最后,高保真CFD能够深入了解机器内部的气流演变,从而使航空设计人员能够设计出性能更高的离心压缩机级。这里应该指出的是,只有通过使用高保真度模型,CFD预测才能与测试数据实现良好的匹配。

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