Lei Shi, Hongwei Ma, Xinghang Yu, Rong Jin, Tianyou Wang
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引用次数: 0
摘要
压缩机设计人员对连续节流过程非常感兴趣。以往的实验研究主要考虑叶轮进口或出口区域预级失速的时间演变特征。在本研究中,我们使用由 15 个高响应传感器组成的压力阵列来探索前级失速的时空演变特征。分析了压力信号在时域和频域上的动态演化特征以及过渡过程中潜在的非稳态流动结构演化。我们发现,压力不规则性的演变特征随流向位置的变化而变化。根据扰动尺度和压力波动情况,可将前阶段失速点到阶段失速点的演化过程分为三个阶段,即(I)叶轮RI、轻度叶轮失速和轻度扩散器失速共存阶段;(II)失速单元与RI扰动相互作用阶段;(III)单一大失速单元阶段。在第一阶段,滞流单元的流向影响区域主要局限在叶轮通道内。在第二阶段,失速单元向上游扩展,并逐渐与 RI 干扰相互作用。与 RI 相关的扰动波长增加,而相关的压力波动减小。在第三阶段,几个失速单元合并成一个大单元。
Spatial-Temporal evolution characteristics of pre-Stage-stall in a centrifugal compressor with a vaneless diffuser and a volute
The continuous throttling process is of great interest for compressor designers. Previous experimental studies mainly consider the temporal evolution characteristics of the pre-stage stall at the impeller inlet or outlet regions. In this study, we explore the spatial-temporal evolution characteristics of pre-stage-stall using a pressure array consisting of 15 high-response sensors. The dynamic evolution characteristics of the pressure signal on the time and frequency domains and the underlying unsteady flow structure evolution during the transition process were analyzed. We find that the evolution characteristics of pressure irregularity varied with the streamwise positions. The evolution process from the pre-stage stall point to the stage stall point can be divided into three stages based on the disturbance scale and pressure fluctuations, namely (I) the coexistence of the impeller RI, the mild impeller stall, and the mild diffuser stall, (II) the interaction of stall cell and RI disturbance, (III) a single large stall cell. In stage I, the streamwise influential regions of the stall cells are mainly confined in the impeller passage. In stage II, the stall cell expands upstream and gradually interacts with the RI disturbance. The wavelength of RI-related disturbance increases while the related pressure fluctuation decreases. In stage III, several stall cells merge into one large cell.
期刊介绍:
The Journal of Power and Energy, Part A of the Proceedings of the Institution of Mechanical Engineers, is dedicated to publishing peer-reviewed papers of high scientific quality on all aspects of the technology of energy conversion systems.