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首页> 外文期刊>International journal of impact engineering >Simulation of the Penetration of a Sequence of Bombs Into Granitic Rock
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Simulation of the Penetration of a Sequence of Bombs Into Granitic Rock

机译:炸弹序列侵彻花岗岩岩石的模拟

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摘要

This computational study was undertaken to investigate the penetration efficiency of a sequence of penetrating bombs into granitic hard rock. The main objective of the study was to ascertain the feasibility of using several bombs―all precision-guided to the same target point and detonated a few tens of milliseconds apart―to defeat a Hard and Deeply Buried Target (HDBT) that cannot be defeated using conventional means. Several simulations were performed in support of this objective, including a sequence of six consecutive bombs traveling with a velocity of 300 m/s, with each bomb being made to penetrate into the crater produced by its predecessor. The simulations were performed using GEODYN―a parallel Eulerian hydrocode with adaptive mesh refinement capabilities ―and a constitutive model for granite that was calibrated using ground motion data from several underground explosions. The cumulative penetration depth from all six bombs was 5.7 m, with the first bomb penetrating as much as 2.1 m and the last one penetrating as little as 0.4 m. The general trend of decreasing penetration depth with each successive bomb was shown to be primarily attributed to crater geometry and to accumulation of high strength steel in the bottom of the crater. Shock conditioning of the rock was shown to have a favorable effect on penetration.
机译:进行了这项计算研究,以研究一系列穿透炸弹进入花岗岩硬岩的穿透效率。该研究的主要目的是确定使用几枚炸弹的可行性(所有炸弹都精确地引导到同一目标点,并相距数十毫秒引爆),以打败无法通过使用而打败的坚硬和深埋目标(HDBT)常规手段。为了实现这一目标,进行了多次模拟,包括一系列连续六枚炸弹以300 m / s的速度行进,并使每枚炸弹都能穿透其前身产生的弹坑。使用GEODYN(具有自适应网格细化功能的并行欧拉水码)和花岗岩的本构模型进行了模拟,该模型使用来自多个地下爆炸的地面运动数据进行了校准。所有六枚炸弹的累积穿透深度为5.7 m,第一个炸弹的穿透深度最大为2.1 m,最后一个炸弹的穿透深度仅为0.4 m。事实证明,每枚相继炸弹的穿透深度降低的总体趋势主要归因于弹坑的几何形状以及高强度钢在弹坑底部的积累。岩石的冲击调节显示出对渗透的有利影响。

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