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Elephant modes and low frequency unsteadiness in a high Reynolds number, transonic afterbody wake

机译:雷诺数高时的大象模式和低频不稳定,跨音速后身唤醒

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摘要

Experiments and large eddy numerical simulation of a fully turbulent afterbody flow in the high subsonic regime, typical of that developing in the wake of a space launcher, exhibit a large-scale low frequency oscillation of the wake. In the present paper, we investigate to what extent the existence of the synchronized oscillations can be interpreted, at the high Reynolds numbers prevailing in this class of flows, by a local stability analysis of the mean flow, as measured in experiments or computed in numerical simulations. This analysis shows the presence of a pocket of absolute instability in the near wake, slightly detached from the body. The global frequency is strikingly well predicted by the absolute frequency at the upstream station of marginal absolute instability, this frequency selection being in agreement with the theory of nonlinear global modes. This result strongly suggests that a so-called elephant mode is responsible for the intense oscillations observed in the lee of space launcher configurations.
机译:在高亚音速状态下完全湍流的尾流的实验和大型涡流数值模拟(在空间发射器尾流中产生的典型情况)显示出尾流的大规模低频振荡。在本文中,我们研究了通过平均流量的局部稳定性分析(在实验中测得或在数值计算中),在此类流中普遍存在的高雷诺数下,可以在多大程度上解释同步振荡的存在模拟。该分析表明,在接近尾声时,存在一个绝对不稳定的口袋,与身体稍有脱离。全局频率可以通过边际绝对不稳定性上游站的绝对频率来很好地预测,该频率选择与非线性全局模式的理论一致。这一结果有力地表明,所谓的大象模式是造成太空发射器配置下风中剧烈振荡的原因。

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