无叶扩压器离心压缩机扩压器失速的非定常行为

H. Miida, K. Tajima, N. Fujisawa, Y. Ohta
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引用次数: 0

摘要

采用实验和计算相结合的方法研究了无叶扩压器离心压气机的非定常扩压失速行为。扩散器失速随着质量流量的减小而产生。扩散器失速室以叶轮转速的25-30%旋转,在距离截止点180°处观察到扩散器失速波动。扩压器失速波动幅度在截止点附近逐渐增大。根据扩压器入口速度测量,扩压器失速波动在叶冠和轮毂两侧附近均有产生,且在距截止点180°和240°处出现。通过CFD分析,扩压器出口处的质量流量波动表现为一个低质量流区,在叶轮转速的25%左右旋转。它们从分界线180°处开始,随着该区域接近分界线而发展。因此,扩压器失速可以通过CFD分析进行模拟。首先,扩散器失速单元在边界分离和叶轮排出涡的共同作用下起源于截止点180°处。然后,扩散器失速区通过边界分离积累和诱导的低速区进一步发展,位于失速区中心。低速区在扩压器通道上形成阻塞。扩散器失速室在叶轮旋转方向上由于正流动角引起的边界分离而膨胀。最后,扩散器失速单元在通过截止阀时消失,因为发生了质量流量恢复。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Unsteady Behavior of Diffuser Stall in a Centrifugal Compressor With Vaneless Diffuser
The unsteady diffuser stall behavior in a centrifugal compressor with a vaneless diffuser was investigated by experimental and computational analyses. The diffuser stall generated as the mass flow rate decreased. The diffuser stall cell rotated at 25–30% of the impeller rotational speed, with diffuser stall fluctuations observed at 180° from the cutoff. The diffuser stall fluctuation magnitude gradually increased near the cutoff. Based on diffuser inlet velocity measurements, the diffuser stall fluctuations generated near both the shroud and hub sides, and the diffuser stall appeared at 180° and 240° from the cutoff. According to the CFD analysis, the mass flow fluctuations at the diffuser exit showed a low mass flow region, rotating at approximately 25% of the impeller rotational speed. They began at 180° from the cutoff and developed as this region approached the cutoff. Therefore, the diffuser stall could be simulated by CFD analysis. First, the diffuser stall cell originated at 180° from the cutoff by interaction with boundary separation and impeller discharge vortex. Then, the diffuser stall cell further developed by boundary separation accumulation and the induced low velocity area, located at the stall cell center. The low velocity region formed a blockage across the diffuser passage span. The diffuser stall cell expanded in the impeller rotational direction due to boundary separation caused by a positive flow angle. Finally, the diffuser stall cell vanished when it passed the cutoff, because mass flow recovery occurred.
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