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Computation of Large-Scale Structure Jet Noise Sources With Weak Nonlinear Effects Using Linear Euler

机译:线性欧拉法计算具有非线性效应的大型结构射流噪声源

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摘要

An approximate technique is presented for the prediction of the large-scale turbulent structure sound source in a supersonic jet. A linearized Euler equations code is used to solve for the flow disturbances within and near a jet with a given mean flow. Assuming a normal mode composition for the wave-like disturbances, the linear radial profiles are used in an integration of the Navier-Stokes equations. This results in a set of ordinary differential equations representing the weakly nonlinear self-interactions of the modes along with their interaction with the mean flow. Solutions are then used to correct the amplitude of the disturbances that represent the source of large-scale turbulent structure sound in the jet.
机译:提出了一种用于超声速射流中大型湍流结构声源预测的近似技术。线性欧拉方程代码用于解决具有给定平均流量的射流内部和附近的流动扰动。假设波状扰动为正态模态,则将线性径向轮廓用于Navier-Stokes方程的积分。这导致了一组常微分方程,这些微分方程表示模式的弱非线性自相互作用以及它们与平均流的相互作用。然后使用解决方案来校正扰动的幅度,该扰动的幅度代表了射流中大规模湍流结构声的来源。

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