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NUMERICAL EVALUATION OF LOSSES IN SHROUDED AND CANTILEVERED STATORS OF A MULTI-STAGE AXIAL COMPRESSOR

机译:多级轴流压缩机带冠和悬臂定子损耗的数值计算

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The loss coefficient based only on the stagnation pressure has traditionally been used in the analysis of axial compressors for the comparison between shrouded and cantilevered stator configurations. In recent years, engineers have been able to perform more detailed Computational Fluid Dynamics simulations, allowing them to resolve the flow field in the leakage paths. The two stator hub designs are, however, affected by the rotating surfaces in a different way: in cantilevered stators, the relative rotation between the stator and the hub imparts energy to the hub flow, whereas in shrouded stators, the rotating inner leakage surface imparts energy to the seal cavity leakage flow. The aim of this work is to analyze the performance of a multi-stage axial compressor featuring a change of stator hub configuration, by employing both the conventional loss coefficient based on the stagnation pressure and the loss coefficient based on the entropy change. It is shown, that in the evaluation of the losses of a multi-stage axial machine, it is essential to consider the different 3D distributions of stagnation temperature resulting from the two stator hub configurations, which are transferred to the downstream rows.
机译:传统上,仅基于滞止压力的损失系数用于轴流压缩机的分析,以比较带护罩和悬臂定子的配置。近年来,工程师们已经能够进行更详细的计算流体动力学模拟,从而能够解析泄漏路径中的流场。然而,两种定子轮毂的设计以不同的方式受到旋转表面的影响:在悬臂定子中,定子和轮毂之间的相对旋转将能量传递给轮毂流,而在带护罩的定子中,旋转的内部泄漏表面将能量传递给密封腔泄漏流。本文采用基于滞止压力的常规损失系数和基于熵变的损失系数,分析了多级轴流压气机定子轮毂结构变化时的性能。结果表明,在评价多级轴流机的损耗时,必须考虑由两个定子轮毂配置产生的不同的3D分布的温度分布,这些分布被转移到下游行。

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