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Direct simulations of outdoor blast wave propagation from source to receiver

机译:从源到接收器的户外爆炸波传播的直接模拟

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摘要

Outdoor blast waves generated by impulsive sources are deeply affected by numerous physical conditions such as source shape or height of burst in the near field, as well as topography, ground nature, or atmospheric conditions at larger distances. Application of classical linear acoustic methods may result in poor estimates of peak overpressures at intermediate ranges in the presence of these conditions. Here, we show, for the first time, that converged direct fully nonlinear simulations can be produced at a reasonable CPU cost in two-dimensional axisymmetric geometry from source location to more than . The numerical procedure is based on a high-order finite-volume method with adaptive mesh refinement for solving the nonlinear Euler equations with a detonation model. It is applied to a real outdoor pyrotechnic site. A digital terrain model is built, micro-meteorological conditions are included through an effective sound speed, and a ground roughness model is proposed in order to account for the effects of vegetation and unresolved scales. Two-dimensional axisymmetric simulations are performed for several azimuths, and a comparison is made with experimental pressure signals recorded at scaled distances from 36 to . The relative importance of the main physical effects is discussed.
机译:由脉冲来源产生的户外爆炸波深受诸如近场中爆发的源形或爆裂的源形或高度的诸如诸如较大距离的地形,地面或大气条件。经典线性声学方法的应用可能导致这些条件存在下中间范围在中间范围内的峰值过度差的估计。在这里,我们首次示出了融合的直接完全非线性模拟,可以以合理的CPU成本从源位置的二维轴对称几何形状中产生超过。数值过程基于具有自适应网格细化的高阶有限体积方法,用于用爆炸模型求解非线性欧拉方程。它适用于真正的户外烟火网站。构建了一种数字地形模型,通过有效的声速包括微气象条件,并且提出了地面粗糙度模型,以便考虑植被和未解决的尺度的影响。对多方位角执行二维轴对称模拟,并且使用从36到36到36到的缩放距离记录的实验压力信号进行比较。讨论了主要物理效应的相对重要性。

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