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Atmospheric turbulence conditions leading to focused and folded sonic boom wave fronts

机译:大气湍流条件导致聚焦和折叠的声波波阵面

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摘要

The propagation and subsequent distortion of sonic booms with rippled wave fronts are investigated theoretically using a nonlinear time-domain finite-difference scheme. This work seeks to validate the rippled wave front approach as a method for explaining the significant effects of turbulence on sonic booms [A. S. Pierce and D. J. Maglieri, J. Acoust. Soc. Am. 51, 702-721 (1971)]. A very simple description of tubulence is employed in which velocity perturbations within a shallow layer of the atmosphere form strings of vortices characterized by their size and speed. Passage of a steady-state plane shock front through such a vortex layer produces a periodically rippled wave front which, for the purposes of the present investigation, serves as the initial condition for a finite-difference propagation scheme. Results show that shock strength and ripple curvature determine whether ensuing propagation leads to wave front folding. High resolution images of the computed full wave field provide insights into the spiked and rounded features seen in sonic booms that have propagated through turbulence.
机译:理论上使用非线性时域有限差分方案研究了具有波纹波阵面的声波臂的传播和随后的畸变。这项工作旨在验证波纹波阵面方法作为一种解释湍流对音爆的重大影响的方法[A. S. Pierce和D. J. Maglieri,J。Acoust。 Soc。上午。 51,702-721(1971)]。使用对气管扩张的非常简单的描述,其中在大气浅层内的速度扰动形成了以其大小和速度为特征的涡流串。稳态平面激波锋穿过这种涡流层会产生周期性波动的波阵波,出于本研究的目的,该波阵波波作为有限差分传播方案的初始条件。结果表明,冲击强度和波纹曲率决定了随后的传播是否导致波前折叠。计算出的全波场的高分辨率图像提供了对通过湍流传播的音爆中所见的尖峰和圆形特征的见解。

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