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The Effect of Degree of Saturation of Sand on Detonation Phenomena Associated with Shallow-Buried and Ground-Laid Mines

机译:沙的饱和度对浅埋和埋地雷相关爆轰现象的影响

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A new materials model for sand has been developed in order to include the effects of the degree of saturation and the deformation rate on the constitutive response of this material. The model is an extension of the original compaction materials model for sand in which these effects were neglected. The new materials model for sand is next used, within a non-linear-dynamics transient computational analysis, to study various phenomena associated with the explosion of shallow-buried and ground-laid mines. The computational results are compared with the corresponding experimental results obtained through the use of an instrumented horizontal mine-impulse pendulum, pressure transducers buried in sand and a post-detonation metrological study of the sand craters. The results obtained suggest that the modified compaction model for sand captures the essential features of the dynamic behavior of sand and accounts reasonably well for a variety of the experimental findings related to the detonation of shallow-buried or ground-laid mines.
机译:为了包括饱和度和变形率对这种材料的本构响应的影响,已经开发了一种新的砂子材料模型。该模型是原始压实材料模型的扩展,其中忽略了这些影响。接下来,在非线性动力学瞬态计算分析中,将使用新的砂料模型来研究与浅埋地埋雷爆炸相关的各种现象。计算结果与相应的实验结果进行了比较,这些结果是通过使用仪器化的水平地雷冲击摆,埋在沙子中的压力传感器以及爆炸后的陨石坑计量学研究获得的。获得的结果表明,改进的砂土压实模型捕获了砂土动力特性的基本特征,并合理地解释了与浅埋或地面埋雷的爆炸有关的各种实验发现。

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