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Penetration Prediction Of Missiles With Different Nose Shapes By The Discrete Element Numerical Approach

机译:离散元数值方法预测不同鼻形导弹的侵彻率

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摘要

A three dimensional numerical model based on the discrete element method (DEM) is developed to predict the penetration depth caused by a non-deformable missile against a reinforced concrete slab. Initial calibration of the model was done with a series of flat-nose missile tests. Additional simulations were performed with varying shapes for the missile's nose. The present numerical model is compared to experimental test data provided by the French Atomic Energy Agency (CEA) and the French Electrical power Company (EDF). For thin concrete slabs, the evolution of the penetration depth in terms of the nose shape predicted by the DEM agrees more with the experimental data than the evolution predicted by Chen and Li's empirical law.
机译:建立了基于离散元方法(DEM)的三维数值模型,以预测不可变形导弹对钢筋混凝土板的穿透深度。该模型的初始校准是通过一系列扁鼻导弹测试完成的。对导弹的鼻子进行了不同形状的附加模拟。将当前数值模型与法国原子能机构(CEA)和法国电力公司(EDF)提供的实验测试数据进行比较。对于薄混凝土板,DEM所预测的根据鼻形的穿透深度的变化与Chen和Li的经验定律所预测的变化相比,更符合实验数据。

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