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首页> 外文期刊>Journal de Physique, IV: Proceedings of International Conference >Some Features of the Curvature of a Two-Dimensional Detonation Shock Front at a Simple Refraction Locus
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Some Features of the Curvature of a Two-Dimensional Detonation Shock Front at a Simple Refraction Locus

机译:简单折射轨迹上二维爆轰激波锋面曲率的一些特征

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We present a theoretical study of the interaction of a constant-velocity two-dimensional detonation wave with its surrounding medium. For the case of pure refraction, we obtain exact expressions for the interface curvatures of the shock fronts in both the explosive (X) and its confinement (C) in terms of the detonation velocity D, the material properties of X and C and, if the flow is cylindrically symmetric, the radius of the explosive charge. These relations are obtained from the constraints imposed on the flow derivatives of the pressure P and the flow turning angle 6 by the conservation laws, the boundary conditions at the curved shock fronts and the contact conditions matching P and 9 along the interface. This model is used in our numerical analysis of a polytropic explosive with a pressure-dependent decomposition rate and a polytropic confinement. We find that, for a given D, the explosive's interface curvature Cx decreases as the confinement's density increases.
机译:我们对恒速二维爆轰波与其周围介质的相互作用进行了理论研究。对于纯折射的情况,我们根据爆炸速度D,X和C的材料特性,以及如果得到的话,获得了炸药(X)及其约束(C)中激波锋面的曲率的精确表达式。气流呈圆柱对称,即炸药半径。这些关系是通过守恒定律,对压力P和流动转向角6的流量导数施加的约束,弯曲冲击波前沿的边界条件以及沿界面匹配P和9的接触条件获得的。该模型用于我们对具有取决于压力的分解速率和多向约束的多向爆炸物的数值分析中。我们发现,对于给定的D,炸药的界面曲率Cx随着限制密度的增加而减小。

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