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Visual determination of the onset of irregular blast wave reflection

机译:视觉确定不规则爆发波反射的开始

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This paper presents further results of an ongoing experimental and numerical investigation into the unsteady process of blast wave reflection from straight smooth surfaces. It is shown that basic blast wave phenomena such as the transition from regular to irregular wave reflection can be adequately and conveniently studied in a laboratory environment by using small charges with masses in the milligram range. While the laboratory scale generally provides greater accessibility, it also imposes more stringent conditions on the diagnostics than the large-scale environment. The paper reviews the previously found considerable discrepancies between numerical and experimental results for the location x_(tr) of the transition from regular to irregular wave reflection. These are caused by the initially minuscule size and gradual growth of the Mach stem and the limited resolution of the recording material. Different techniques are used to improve the accuracy of the experimental determination of the transition point, and a new combination of modern high-speed photography with the traditional soot technique is shown to be the most promising tool for this purpose.
机译:本文提出了进一步的实验性和数值研究进入从直滑表面的爆炸波反射的不稳定过程。结果表明,通过在实验室环境中使用小电荷在实验室环境中,在实验室环境中,可以在实验室环境中进行基本爆发波现象,通过使用毫克范围内的小电荷,可以在实验室环境中进行充分和方便地研究。虽然实验室规模通常提供更大的可访问性,但它在诊断上也比大规模环境对诊断产生了更严格的条件。本文评论了先前发现从常规到不规则波反射的过渡的位置X_(TR)的数值和实验结果之间发现的相当大的差异。这些是由最初的Mach杆的最初小尺寸和逐渐生长引起的,并且记录材料的有限分辨率。不同的技术用于提高过渡点的实验确定的准确性,与传统烟灰技术的现代高速摄影的新组合被显示为此目的最有前途的工具。

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