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Effects of rotor tip blade loading variation on compressor stage performance

机译:转子叶片负荷变化对压气机级性能的影响

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摘要

Changes in loss generation associated with altering the rotor tip loading of an embedded compressor stage is assessed. Steady and unsteady three-dimensional computations, complemented by control volume analyses, for varying rotor tip loading distributions provided results for determining if aft-loading rotor tip would yield a stage performance benefit in terms of a reduction in loss generation. Aft-loading rotor blade tip yields a relatively less-mixed-out tip leakage flow at the rotor exit and a reduction in overall tip leakage mass flow hence a lower loss generation; however, the attendant changes in tip flow angle distribution are such that there is an overall increase in the flow angle mismatch between tip flow and main flow leading to higher loss generation. The latter outweighs the former so that rotor passage loss from aft-loading rotor tip is marginally higher unless a constraint is imposed on tip flow angle distribution so that associated induced loss is negligible; a potential strategy for achieving this is proposed. In the course of assessing the benefit from unsteady tip leakage flow recovery in the downstream stator, it was determined that tip clearance flow is inherently unsteady with a time-scale distinctly different from the blade passing time. The disparity between the two timescales: (i) defines the periodicity of the unsteady rotor-stator flow, which is an integral multiple of blade passing time; and (ii) causes tip leakage vortex to enter the downstream stator at specific pitchwise locations for different blade passing cycles, which is a tip leakage flow phasing effect. Because of an inadequate grid resolution defining the unsteady interaction of tip flow with downstream stator, the benefit from unsteady tip flow recovery is the lower bound of its actual benefit. A revised design hypothesis is thus as follows: "rotor should be tip-aft-loaded and hub-fore-loaded while stator should be hub-aft-loaded and tip-fore-loaded with tip/hub leakage flow angle distribution such that it results in no additional loss". For the compressor stage being assessed here, an estimated 0.15% enhancement in stage efficiency is possible from aft-loading rotor tip only.
机译:评估了与改变嵌入式压缩机级的转子顶端负载相关的损耗产生的变化。稳定的和不稳定的三维计算,再加上控制量分析,可用于变化的转子尖端载荷分布,从而提供了确定后载荷转子尖端是否会产生阶段性能优势(减少损失)的结果。后装式转子叶片末梢在转子出口处产生了相对较少混合的末梢泄漏流,总末梢泄漏质量流减少,因此产生的损耗较低;然而,伴随着尖端流动角分布的变化,使得尖端流动和主流之间的流动角失配总体上增加,导致更高的损耗产生。后者要比前者大,因此,除非对叶尖的流角分布施加限制,以致相关的感应损失可忽略不计,否则后装式转子叶尖的转子通道损失会略高。提出了实现这一目标的潜在策略。在评估下游定子中不稳定的叶尖泄漏流恢复带来的好处的过程中,已确定叶尖间隙流固有地是不稳定的,其时间尺度与叶片通过时间明显不同。两个时间尺度之间的差异:(i)定义了非恒定转子-定子流的周期性,它是叶片通过时间的整数倍; (ii)使叶尖泄漏涡流在不同的叶片通过循环中在特定的螺距位置处进入下游定子,这是叶尖泄漏定相的效果。由于网格分辨率不足,无法确定尖端流与下游定子的不稳定相互作用,因此,不稳定尖端流恢复的好处是其实际好处的下限。因此,修改后的设计假设如下:“转子应装卸后装在叶轮上,而定子应装卸在前并装在叶轮上,叶尖/轮毂的泄漏流角分布应使转子在装卸时先装在叶轮后且装在叶轮上。不会造成额外损失”。对于此处要评估的压缩机级,仅通过尾部装卸的转子端部,估计级效率可提高0.15%。

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  • 作者

    Tiralap, Aniwat;

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  • 年度 2015
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  • 原文格式 PDF
  • 正文语种 eng
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