首页> 外文期刊>The Archive of Mechanical Engineering >Application of the Wavelet Transform of Pressure Signals for Detecting and Analyzing Rotating Stall Inception in Axial Flow Low Speed Compressor Stage
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Application of the Wavelet Transform of Pressure Signals for Detecting and Analyzing Rotating Stall Inception in Axial Flow Low Speed Compressor Stage

机译:压力信号小波变换在轴向流量低速压缩机阶段检测和分析旋转旋转初始化的应用

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摘要

The paper presents a research program carried out to improve understanding of the fluid dynamics mechanisms that lead to rotating stall in the axial flow low speed compressor stage. The stalling behavior of this compressor stage was studied by measuring unsteady casing pressure by means of a circumferentially and axially spaced array of high frequency pressure transducers. Another probe used was a disc static pressure probe, with the pressure transducer, for in-flow and out-flow measurements along the blade span. It was expected that understanding of the fluid dynamics will facilitate at least two important tasks. The first was to accurately predict of when and how a particular compressor would stall. The second was to control, delay, or eventually suppress the rotating stall and surge. In consequence, one could extend the useful operating range of the axial compressor. Another motivation for the research was to compare the results from the three applied analysis techniques by using a single stall inception event. The first one was a simple visual inspection of the traces, which brought about a very satisfactory effect. The second one was application of spatial Fourier decomposition to the analysis of stall inception data, and the third method of analysis consisted in application of wavelet filtering in order to better understand the physical mechanisms which lead to rotating stall. It was shown that each of these techniques would provide different information about compressor stall behavior, and each method had unique advantages and limitations.
机译:本文提出了一种研究计划,以改善对流体动力学机构的理解,该机制导致轴向流量低速压缩机级的旋转失速。通过通过圆周和轴向间隔的高频压力换能器测量不稳定的壳体压力来研究该压缩机级的停滞行为。使用的另一个探针是圆盘静压探针,具有压力传感器,用于沿着叶片跨度的流动和流出测量。预计对流体动力学的理解将有助于至少两个重要任务。首先是准确地预测特定压缩机的何时以及如何摊位。第二个是控制,延迟或最终抑制旋转的摊位和浪涌。结果,可以延长轴向压缩机的有用操作范围。研究的另一个动机是通过使用单个摊位初始活动来比较三种应用分析技术的结果。第一个是简单的目视检查痕迹,这带来了非常令人满意的效果。第二个是将空间傅里叶分解应用于失速初始数据的分析,并且第三种分析方法在应用小波滤波中组成,以便更好地理解导致旋转失速的物理机构。结果表明,这些技术中的每一种都将提供有关压缩机摊位行为的不同信息,并且每个方法具有独特的优点和限制。

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