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首页> 外文期刊>Journal of Fluid Mechanics >Cross-flow-type breakdown induced by distributed roughness in the boundary layer of a hypersonic capsule configuration
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Cross-flow-type breakdown induced by distributed roughness in the boundary layer of a hypersonic capsule configuration

机译:由高超声速胶囊配置边界层的分布式粗糙度引起的横流型分解

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摘要

Direct numerical simulations are undertaken to investigate the nature of instability mechanisms induced by singular and distributed roughnesses on a blunt-capsule configuration. On the base of a capsule-like hemispherical forebody at wind-tunnel conditions (M = 5.9) we analyse the development of unsteady disturbances behind a patch of two different roughness geometries. First, spanwise periodic roughness elements are considered and cross-validation with other methods of the stability analysis is achieved. Two main unstable modes are found in the roughness wake, corresponding to the symmetric and antisymmetric modes already known for single roughness elements. Second, the case of a patch of (pseudo-)randomly distributed roughness is presented. A new type of roughness-induced cross-flow-like instability is observed for the blunt-capsule configuration. The rapid growth of primary and secondary instabilities in the cross-flow-type vortex is analysed and quantified in both the linear and nonlinear stages up to the laminar-turbulent breakdown. Spatio-temporal Fourier analysis is performed to track the onset of secondary instabilities, whereas laminar-turbulent transition is identified by the steep increase of the wall heat flux.
机译:进行直接数值模拟,以研究钝囊构型奇异和分布粗糙度诱导的不稳定机制的性质。在风隧道条件下(M = 5.9)的胶囊状半球形前体的底部,我们分析了两种不同粗糙度几何形状的斑块后面的不稳定干扰的发展。首先,考虑翼展的周期性粗糙度元素,并实现了与稳定性分析的其他方法的交叉验证。在粗糙度唤醒中发现两个主要不稳定模式,对应于单个粗糙度元素已知的对称和防反对模式。其次,呈现了(伪)随机分布的粗糙度的斑点的情况。对于钝胶囊构型,观察到一种新型的粗糙度诱导的横流不稳定性。在线性和非线性阶段的线性和非线性阶段中分析并定量跨流型涡旋中的初级和次要施用能力的快速生长,该速度和非线性阶段达到层状湍流击穿。进行时空傅里叶分析以跟踪次要稳定性的开始,而通过壁热通量的陡峭增加来识别层湍流转变。

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