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Modeling of coherent structures in a turbulent jet as global linear instability wavepackets: Theory and experiment

机译:湍流中相干结构作为整体线性不稳定性波包的建模:理论与实验

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Perturbation wavepackets in a jet, induced by externally applied forcing, are computed from the linearized equations of motion. An experimentally measured mean flow serves as the base state for this linear analysis, and optimally amplified mono-frequency perturbations are identified, in the sense of maximal gain between the forcing energy input and the flow response energy. Sub-optimal orthogonal forcing/response structures are also discussed. Linear analysis results are then compared to measured perturbation wavepackets in the jet experiment. The study addresses the question to what extent the true dynamics of a turbulent jet can be represented by a model based on linear instability. (C) 2016 Elsevier Inc. All rights reserved.
机译:由线性施加的运动方程计算出由外部施加的力引起的射流中的扰动波包。实验测得的平均流量充当此线性分析的基本状态,并且在强迫能量输入和流量响应能量之间的最大增益的意义上,确定了最佳放大的单频扰动。还讨论了次优的正交强迫/响应结构。然后将线性分析结果与喷射实验中测得的扰动波包进行比较。这项研究解决了一个问题,即基于线性不稳定性的模型可以在多大程度上代表湍流射流的真实动力。 (C)2016 Elsevier Inc.保留所有权利。

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