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SECONDARY FLOWS IN THE RETURN SYSTEM OF A CENTRIFUGAL COMPRESSOR STAGE

机译:离心压缩机级回流系统中的二次流

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This Paper presents an analysis of the flow in the return system of a centrifugal compressor with a flow coefficient of 0.15. Based on detailed experimental and numerical data, the areas of high losses and potentials for improving the return system geometry are revealed. Special emphasis is placed on the interaction of the flow in the return system components, including the U-bend, the vaned return channel and the final L-bend. Strong flow redistribution occurs due to the sharp curvature of the U-bend, forming a blockage area at the hub near the vane leading edge. This causes a strong passage vortex, which is further intensified by the pressure gradient induced by the L-bend. Additionally, the flow near the shroud accelerates due to the large blockage area near the hub at the exit of the U-bend, resulting in high friction losses. To identify the main causes of loss, a method was evolved. It was validated and supplied by pneumatic measurement data. On this basis analytical approaches were taken to quantify the total pressure losses due to friction, secondary flows, incidence and trailing edge flow. As a result, approximately 60% of the return system losses arise due to friction. Another 30-40 % are caused by secondary flows. It can be concluded that the results of the investigation contribute to the understanding of the secondary flow structures inside a centrifugal compressor return system of high mass flow rates. By combining the knowledge acquired in respect to the sources of highest losses with the experimental data, a well-founded basis for future optimization and the validation of numerical approaches is possible.
机译:本文对流量系数为0.15的离心压缩机回油系统中的流动进行了分析。根据详细的实验和数值数据,揭示了高损耗区域和改善回流系统几何形状的潜力。特别强调回流系统组件(包括U型弯管,带叶片的回流通道和最终L型弯管)中流的相互作用。由于U形弯头的急剧弯曲而产生了强烈的流量重新分配,从而在靠近叶片前缘的轮毂处形成了堵塞区域。这会导致强大的通道涡流,而该通道涡流会因L形弯头引起的压力梯度而进一步加剧。另外,由于在U形弯头出口处的毂附近有较大的堵塞区域,因此护罩附近的流动会加速,从而导致较高的摩擦损耗。为了确定损失的主要原因,发展了一种方法。它已通过气动测量数据验证并提供。在此基础上,采用分析方法来量化由于摩擦,二次流,入射和后缘流引起的总压力损失。结果,大约60%的回流系统损耗是由于摩擦而产生的。另外30-40%是由二次流量引起的。可以得出结论,研究结果有助于理解高质量流量的离心式压缩机回流系统内的二次流结构。通过将获得的有关最高损失来源的知识与实验数据相结合,可以为将来的优化和数值方法的验证奠定良好的基础。

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