Compressor Surges of Near-resonant Type and Convective Type; the Boundaries and the Differences in the Behaviors

Q3 Engineering
N. Yamaguchi
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引用次数: 0

Abstract

Compressor deep surges are observed to be of either near-resonant type or convective type. The differences of the behaviors and the boundaries between both types were tried to make clear in the situations of a single-stage axial compressor on the basis of numerical-experimental results by use of a surge simulation code. In the near-resonant surges, the surge frequencies relative to the resonance frequency range roughly from 0.9 to 1.1, close to the resonance condition. The surges tend to degenerate just above or in the resonance range. The convective type is said to perform actions of emptying and filling the flow in the delivery plenum, showing lower relative surge frequencies less than 0.9. The study for the criteria governing the boundary between both surge types has suggested an axial motion parameter as the candidate. The convective surges are observed to occur above the boundary value of the axial motion parameter. In the environment, the fluctuation amplitudes tend to be larger than those in the near-resonant surges. The situations force the compressor to work over a wider range from the turbine-action zone to the deeply-reverse flow zone along the stage characteristic. The flow reversals thus reinforced will enhance the so-called emptying and filling actions in the convective surges.
近谐振型和对流型压气机喘振行为的界限和差异
观察到压缩机深层喘振为近共振型或对流型。在数值实验结果的基础上,利用喘振模拟程序,试图阐明单级轴流压缩机工况下两种类型的行为和边界的差异。在近谐振浪涌中,浪涌频率相对于谐振频率的范围大致为0.9至1.1,接近谐振条件。浪涌往往在谐振范围以上或谐振范围内退化。据说对流型执行排空和填充输送室中的流体的动作,显示出低于0.9的较低相对喘振频率。对控制两种涌浪类型之间边界的标准的研究表明,轴向运动参数是候选参数。观察到对流浪涌发生在轴向运动参数的边界值以上。在环境中,波动幅度往往大于近谐振浪涌中的波动幅度。这种情况迫使压缩机沿着级特性在从涡轮机作用区到深度逆流区的更宽范围内工作。这样增强的气流逆转将增强对流浪涌中所谓的排空和填充作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
International Journal of Fluid Machinery and Systems
International Journal of Fluid Machinery and Systems Engineering-Industrial and Manufacturing Engineering
CiteScore
1.80
自引率
0.00%
发文量
32
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