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Interaction of the sonic boom with atmospheric turbulence

机译:音爆与大气湍流的相互作用

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摘要

Theoretical research was carried out to study the effect of free-stream turbulence on sonic boom pressure fields. A new transonic small-disturbance model to analyze the interactions of random disturbances with a weak shock was developed. The model equation has an extended form of the classic small-disturbance equation for unsteady transonic aerodynamics. An alternative approach shows that the pressure field may be described by an equation that has an extended form of the classic nonlinear acoustics equation that describes the propagation of sound beams with narrow angular spectrum. The model shows that diffraction effects, nonlinear steepening effects, focusing and caustic effects and random induced vorticity fluctuations interact simultaneously to determine the development of the shock wave in space and time and the pressure field behind it. A finite-difference algorithm to solve the mixed type elliptic-hyperbolic flows around the shock wave was also developed. Numerical calculations of shock wave interactions with various deterministic and random fluctuations will be presented in a future report.
机译:进行了理论研究,以研究自由流湍流对声波臂压力场的影响。建立了一种新的跨音速小扰动模型,用于分析随机扰动与弱冲击的相互作用。对于不稳定的跨音速空气动力学,模型方程具有经典小扰动方程的扩展形式。一种替代方法表明,压力场可以用具有经典非线性声学方程式扩展形式的方程式来描述,该方程式描述了具有窄角谱的声束的传播。该模型表明,衍射效应,非线性陡峭效应,聚焦和苛性效应以及随机诱发的涡度涨落同时相互作用,从而确定了冲击波在时空上的发展以及其背后的压力场。还开发了一种有限差分算法来求解冲击波周围的混合型椭圆双曲流。在未来的报告中将介绍具有各种确定性和随机波动的冲击波相互作用的数值计算。

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  • 作者

    Rusak, Zvi; Cole, Julian D.;

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  • 年度 1994
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