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PERFORMANCE ANALYSIS OF A LOW-PRESSURE THREE-STAGE AXIAL COMPRESSOR

机译:低压三级轴流压缩机的性能分析

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摘要

Prediction of three-dimensional flow through a multi-stage axial compressor involving multiple frames of reference is one of the challenging tasks in CFD. When the axial gap between the stationary and rotating blade rows is reduced, the blade row interactions become important. Therefore, a detailed knowledge of flow features is essential for the optimum design of multi stage compressor. As the design and conduct of experiments and evaluation of compressor performance is expensive and time consuming, many aerospace industries prefer to obtain the same information by the computational efforts. In this context, a number of CFD codes for modelling and analysis of turbomachinery flows are used. The most exigent aspect of simulating multi-stage compressor is representing the interactions between the rotor and stator. The present work is to find out the best-suited method for the analysis of a low-pressure three-stage compressor that gives reliable results. The motivation for this effort is derived from the inability to consistently compare predicted performance parameters obtained from using the interface models with the experimental results, which is especially true for off-design operation.
机译:预测涉及多个参考系的流经多级轴向压缩机的三维流动是CFD中的一项艰巨任务。当固定和旋转叶片排之间的轴向间隙减小时,叶片排的相互作用变得很重要。因此,对流量特性的详细了解对于多级压缩机的优化设计至关重要。由于设计和进行实验以及评估压缩机性能既昂贵又费时,因此许多航空航天行业都希望通过计算获得相同的信息。在这种情况下,使用了许多CFD代码来对涡轮机械流进行建模和分析。模拟多级压缩机的最紧急方面是代表转子和定子之间的相互作用。当前的工作是找到最适合分析低压三级压缩机的方法,该方法可提供可靠的结果。进行这种努力的动机是由于无法始终将使用接口模型获得的预测性能参数与实验结果进行比较,这对于非设计操作尤其如此。

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