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Numerical study of spherical blast-wave propagation and reflection

机译:球形爆炸波传播和反射的数值研究

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The objective of this study is to understand the flow structures of weak and strong spherical blast waves either propagating in a free field or interacting with a flat plate. A 5th-order weighted essentially non-oscillatory scheme with a 4th-order Runge-Kutta method is employed to solve the compressible Euler/Navier-Stokes equations in a finite volume approach. The real-gas effects are taken into account when high temperature occurs. A shock-tube problem with the real-gas effect is first tested in order to verify the solver accuracy. Moreover, unsteady shock waves moving over a stationary wedge with various wedge angles, resulting in different types of shock wave reflections, are also tested. It is found that the computed results agreed well with the existing data. Second. the propagation of a weak spherical blast wave, created by rupture of a high-pressure isothermal sphere, in a free field is studied. It is found that there are three minor shock waves moving behind the main shock. Third, the problem of a strong blast wave interacting with a flat plate is investigated. The flow structures associated with single and double Mach reflections are reported in detail. It is found that there are at least three local high-pressure regions near the flat plate. [References: 20]
机译:这项研究的目的是了解在自由场中传播或与平板相互作用的弱和强球形爆炸波的流动结构。采用具有四阶Runge-Kutta方法的五阶加权基本非振荡方案,以有限体积方法求解可压缩的Euler / Navier-Stokes方程。当发生高温时,将考虑实际气体的影响。首先测试具有真实气体效应的激波管问题,以验证求解器的精度。此外,还测试了在具有各种楔角的固定楔上移动的不稳定冲击波,导致了不同类型的冲击波反射。发现计算结果与现有数据吻合良好。第二。研究了高压等温球体破裂产生的弱球形爆炸波在自由场中的传播。发现在主震后有三个较小的震波在移动。第三,研究了强冲击波与平板相互作用的问题。详细报道了与单马赫数和双马赫数反射有关的流动结构。发现在平板附近至少存在三个局部高压区域。 [参考:20]

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