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首页> 外文期刊>Journal of Fluid Mechanics >Biglobal instabilities of compressible open-cavity flows
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Biglobal instabilities of compressible open-cavity flows

机译:压缩露天流动的Biglobal稳定性

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摘要

The stability characteristics of compressible spanwise-periodic open-cavity flows are investigated with direct numerical simulation (DNS) and biglobal stability analysis for rectangular cavities with aspect ratios of L/D = 2 and 6. This study examines the behaviour of instabilities with respect to stable and unstable steady states in the laminar regime for subsonic as well as transonic conditions where compressibility plays an important role. It is observed that an increase in Mach number destabilizes the flow in the subsonic regime and stabilizes the flow in the transonic regime. Biglobal stability analysis for spanwise-periodic flows over rectangular cavities with large aspect ratio is closely examined in this study due to its importance in aerodynamic applications. Moreover, biglobal stability analysis is conducted to extract two-dimensional (2-D) and 3-D eigenmodes for prescribed spanwise wavelengths lambda/D about the 2-D steady state. The properties of 2-D eigenmodes agree well with those observed in the 2-D nonlinear simulations. In the analysis of 3-D eigenmodes, it is found that an increase of Mach number stabilizes dominant 3-D eigenmodes. For a short cavity with L/D = 2, the 3-D eigenmodes primarily stem from centrifugal instabilities. For a long cavity with L/D = 6, other types of eigenmodes appear whose structures extend from the aft-region to the mid-region of the cavity, in addition to the centrifugal instability mode located in the rear part of the cavity. A selected number of 3-D DNS are performed at M-infinity = 0.6 for cavities with L/D = 2 and 6. For L/D = 2, the properties of 3-D structures present in the 3-D nonlinear flow correspond closely to those obtained from linear stability analysis. However, for L/D = 6, the 3-D eigenmodes cannot be clearly observed in the 3-D DNS due to the strong nonlinearity that develops over the length of the cavity. In addition, it is noted that three-dimensionality in the flow helps alleviate violent oscillations for the long cavity. The analysis performed in this paper can provide valuable insights for designing effective flow control strategies to suppress undesirable aerodynamic and pressure fluctuations in compressible open-cavity flows.
机译:通过直接数值模拟(DNS)和L / D = 2和6的宽高比的直接数值模拟(DNS)和Biglobal稳定性分析进行了直接数值模拟(DNS)和Biglobal稳定性分析。本研究介绍了无稳定性方面的行为亚音速制的层状制度稳定和不稳定的稳定状态,以及压缩性起到重要作用的跨音质条件。观察到,马赫数的增加使子系统中的流量不稳定,并稳定跨音状态下的流动。由于其在空气动力学应用中的重要性,在这项研究中密切研究了矩形腔体的跨越周期流量的Biglobal稳定性分析。此外,进行了大的稳定性分析以提取用于规定的跨度波长λ/ d的二维(2-D)和3-D eIgenmodes,其约为2-D稳态。 2-D Eigenmodes的性质与在2-D非线性模拟中观察到的那些。在分析3-D特征模码中,发现马赫数的增加稳定了显性的3-D eIgenmodes。对于L / D = 2的短腔,3-D eIgenmodes主要源于离心式稳定性。对于具有L / D = 6的长腔,除了位于腔的后部的离心不稳定模式之外,还出现其结构从尾部到腔的中部区域的结构延伸。选择的3-D DNS的3-D DNS在M-Infinity = 0.6上进行L / D = 2和6.对于L / D = 2,3-D非线性流中存在的3-D结构的特性对应与线性稳定性分析中获得的那些。然而,对于L / D = 6,由于在腔的长度上显影,在3-D DNS中不能清楚地观察到3-D eGenmodes。此外,注意到流动中的三维性能有助于减轻长腔的剧烈振荡。本文执行的分析可以为设计有效流动控制策略提供有价值的见解,以抑制可压缩露天流动中的不期望的空气动力和压力波动。

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