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Response of reinforced concrete structural elements to near-field and contact explosions

机译:钢筋混凝土结构构件对近场和接触爆炸的响应

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摘要

The integrity of buildings and the safety of their occupants can be catastrophically affected by the action of contact or near- eld explosions. Numerical simulation studies should be carried out in order to better understand the response of reinforced concrete (RC) structures to such dynamic impulsive actions. When concrete structural elements are subjected to near- eld blast loads, large deformations, rate effects and overloading render the modelling of concrete extremely complex. Significant research has been done since September 11, 2001, in order to improve the computational abilities, to understand the complex non-linear behaviour of concrete under extreme loading conditions and to obtain reliable numerical results. Simulations can be done using ‘user-developed’ codes or commercial hydrocodes. One of the most common hydrocode is LS-DYNA, where concrete can be treated as a homogeneous material. In this particular project LS-DYNA is used along with the Winfrith Concrete Model to simulate the response of a two-layer RC slab to several contact detonations (using C4, Composition-4). The aim is to achieve a contact explosion between the target (slab) and the explosive since literature can provide us with only limited information regarding this. The slab and the high explosive are explicitly modelled using the multi-material arbitrary Lagrangian–Eulerian approach (MM-ALE). The obtained numerical results are validated using experimental data. The aforementioned numerical results of the damage are in favourable agreement with the experimental data, with average errors lying under 10%. In addition, it was observed that the increase in the explosive mass led to a change of the damage modefrom penetration to perforation. Concrete’s crack pattern was also investigated.
机译:接触或近场爆炸的行为会严重影响建筑物的完整性及其乘员的安全。为了更好地理解钢筋混凝土(RC)结构对这种动力冲击作用的响应,应该进行数值模拟研究。当混凝土结构元件承受近场爆炸载荷时,大的变形,速率效应和超载使混凝土建模极为复杂。自2001年9月11日以来,为了提高计算能力,了解极端载荷条件下混凝土的复杂非线性行为并获得可靠的数值结果,已进行了大量研究。可以使用“用户开发的”代码或商业水代码进行仿真。 LS-DYNA是最常见的水力代码之一,其中混凝土可以视为均质材料。在此特定项目中,将LS-DYNA与Winfrith混凝土模型一起使用,以模拟两层RC平板对几种接触爆震的响应(使用C4,Composition-4)。目的是实现目标(平板)与炸药之间的接触爆炸,因为文献只能向我们提供与此有关的有限信息。使用多材料任意拉格朗日-欧拉方法(MM-ALE)对平板和高爆炸药进行显式建模。使用实验数据验证了获得的数值结果。前述的损伤数值结果与实验数据吻合良好,平均误差在10%以下。此外,观察到炸药质量的增加导致破坏方式从穿透变为射孔。还研究了混凝土的裂缝模式。

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