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A Peridynamics-SPH modeling and simulation of blast fragmentation of soil under buried explosive loads

机译:埋藏爆炸载荷下土壤爆炸破裂的Peridynamics-SPH建模和模拟

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In this work, we report a computational study on Peridynamics modeling and simulation of soil fragmentation under buried explosive loads. We have implemented several geomaterial models of soil in the state-based Peridynamics formulation, which can take into account of the effects of strain softening, viscoplasticity, and porosity of soil. Moreover, we adopted a particle decohesion algorithm in the state-based Peridynamics for finite deformation to simulate soil fragmentation. A key technical ingredient of the simulation is the coupling between soil and explosive modeling methods, which is accomplished by coupling the state-based Peridynamics (soil) model with a modified smooth particle hydrodynamics (SPH) model (explosive). The modified SPH formulation used here is a non-local consistent particle dynamics that is formulated in the current (spatial) configuration.
机译:在这项工作中,我们报告了埋藏炸药荷载作用下的土体蠕变动力学建模和模拟的计算研究。我们已经在基于状态的Peridynamics公式中实现了几种土壤土工模型,可以考虑应变软化,粘塑性和土壤孔隙度的影响。此外,我们在基于状态的Peridynamics中采用了粒子解聚算法进行有限变形,以模拟土壤破碎。该模拟的关键技术要素是土壤与炸药建模方法之间的耦合,这是通过将基于状态的蠕变动力学(土壤)模型与改良的光滑颗粒流体动力学(SPH)模型(爆炸性)耦合来完成的。这里使用的修改后的SPH公式是在当前(空间)配置中制定的非局部一致的粒子动力学。

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