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The Unsteady Pre-stall Behavior of the Spike-Type Rotating Stall Within an Airfoil Vaned-Diffuser

机译:翼型旋转轨道扩散器内的尖峰型旋转摊位的不稳定预失速行为

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The spike-type rotating stall(RS) inception inside the vaned-diffuser, which seriously restricts the performance range and brings the problems of blade fatigue, still seems to be a 'mystery' since its randomness. The paper intends to explain the mechanisms of this stall inception. To quantitatively assess the critical unsteady behavior to the initiation of RS inception, the transient measurement characterizes the process falling into the RS through the parameter of 'blade passing irregularity'. The underlying vortex disturbance, related to the growing of the flow complexity and the final spike-type precursor, is further revealed by the full-annulus simulation. The results show the propagation principle of the vortexes from the design to the stall inception point, reflected by the distribution of 'blade passing irregularity'. The performance change of different sub-components due to the vortex behavior is presented. At the RS limit, the sudden ramp-up of the 'blade passing irregularity' near the leading edge (LE), accompanied with the drop of the static pressure rise in the sub-component between the semi-vaneless and throat, corresponds to the spike-type inception in the form of a clockwise vortex connecting the suction side of the diffuser vane and the pressure side of the adjacent vane. Besides, when approaching the spike-type inception point, the couple effect of the growing potential of the diffuser vane and the enhanced vortex disturbance at the impeller outlet degrades the diffuser inlet flow.
机译:尖峰式旋转的装有叶片的扩散器,这严重限制了性能范围和使叶片疲劳的问题内部失速(RS)以来,似乎仍然是因为其随机性“神秘”。本文旨在解释这一失势初始化的机制。为了定量评估对RS成立的关键不稳定行为来说,瞬态测量表征通过“刀片传递不规则性”的参数下降到RS中的过程。通过全环模拟进一步揭示与流动复杂性和最终穗型前体的生长有关的底层涡旋障碍。结果表明,从设计到失速初始点的涡旋的传播原理,反映了“叶片通过不规则”的分布。提出了由于涡旋行为引起的不同子组件的性能变化。在RS限制,“叶片通过不规则性”在前缘(LE)附近的突然增加,伴随着半往外和喉部之间的子组件中的静压升高的掉落对应于以顺时针涡旋的形式钉签,连接扩散器叶片的吸入侧和相邻叶片的压力侧。此外,当接近尖峰型初始点时,漫射器叶片的越来越多的电位的耦合效应和叶轮出口处的增强涡流扰动降低了扩散器入口流。

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