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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >Investigation of transient flow characteristics inside a centrifugal compressor for design and off-design conditions
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Investigation of transient flow characteristics inside a centrifugal compressor for design and off-design conditions

机译:在设计和非设计条件下研究离心压缩机内部的瞬态流动特性

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As the flow rate decreases from the design to the rotating stall condition, the enhanced impeller–diffuser interaction considerably deteriorates the flow condition at the diffuser inlet, which may trigger stall and blade vibration problems. In order to reveal the underlying mechanism and estimate the impact of the interaction within the impeller and diffuser passages, measurements using the wireless acquisition technique and high-frequency response system have been conducted on a 1.5 stage centrifugal compressor with the vaned diffuser. The details of its transient flow characteristics suggest that the effects of the impeller sweep extensively propagate in the diffuser passage. Distinctions of the shroud reversed vortex effect exist between the main and splitter blades at the impeller outlet, which initiates the predominant passage passing frequency at the diffuser inlet under small flow rate condition. In addition, the present study explains why the dominant disturbance shifts back and force between the passage passing frequency and blade passing frequency for different positions of the diffuser and flow rates. Through flow throttling, the diffuser reaction toward the impeller passage considerably strengthens due to the growing pressure potential near the convex surface of the diffuser vane, which is associated with the reversed flow.
机译:当流量从设计状态降低到旋转失速状态时,叶轮与扩散器之间的相互作用增强,会大大加剧扩散器进口处的流动条件,这可能会引发失速和叶片振动问题。为了揭示潜在的机理并估算叶轮和扩压器通道之间相互作用的影响,已在带有叶片扩压器的1.5级离心压缩机上使用无线采集技术和高频响应系统进行了测量。其瞬态流动特性的细节表明,叶轮扫掠的影响在扩散器通道中广泛传播。叶轮出口处的主叶片和分流叶片之间存在护罩反转涡流效应,这在小流量条件下启动了扩压器进口处的主要通过频率。另外,本研究解释了为什么对于扩散器的不同位置和流量,主要扰动会向后移动,并在通道通过频率和叶片通过频率之间产生力。通过节流,由于靠近扩散叶片的凸面附近的压力势在增长,与叶轮流反向有关,扩散器对叶轮通道的反应大大增强。

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