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Finite element analysis of RC walls with different geometries under impact loading

机译:冲击载荷作用下不同几何形状RC壁的有限元分析

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摘要

Today, buildings are exposed to the effects such as explosion and impact loads. Usually, explosion and impact loads that act on the buildings such as nuclear power plants, airports, defense industry and military facilities, can occur occasionally on the normal buildings because of some reasons like drop weight impacts, natural gas system explosions, and terrorist attacks. Therefore, it has become important to examine the behavior of reinforced concrete (RC) structures under impact loading. Development of computational mechanics has facilitated the modeling of such load conditions. In this study, three kinds of RC walls that have different geometric forms (square, ellipse, and circle) and used in guardhouses with same usage area were modeled with Abaqus finite element software. The three configurations were subjected to the same impact energy to determine the geometric form that gives the best behavior under the impact loading. As a result of the analyses, the transverse impact forces and failure modes of RC walls under impact loading were obtained. Circular formed (CF) reinforced concrete wall which has same impact resistance in each direction had more advantages. Nonetheless, in the case of the impact loading occurring in the major axis direction of the ellipse (EF-1), the elliptical formed reinforced concrete wall has higher impact resistance.
机译:今天,建筑物暴露于爆炸和冲击载荷等影响。通常,由于诸如坠落重量影响,天然气系统爆炸和恐怖袭击等原因,通常会在正常建筑物上偶尔发生作用在建筑物(例如核电厂,机场,国防工业和军事设施)上的爆​​炸和冲击载荷。因此,研究钢筋混凝土(RC)结构在冲击载荷下的性能已经变得很重要。计算力学的发展促进了这种载荷条件的建模。在这项研究中,使用Abaqus有限元软件对三种具有不同几何形状(正方形,椭圆形和圆形)并用于使用面积相同的警卫室的RC墙进行了建模。这三种构型受到相同的冲击能量,以确定在冲击载荷下给出最佳性能的几何形状。分析的结果,得到了冲击荷载作用下钢筋混凝土墙的横向冲击力和破坏模式。在各个方向上具有相同抗冲击性的圆形(CF)钢筋混凝土墙具有更多优势。但是,在椭圆(EF-1)的长轴方向上产生冲击载荷的情况下,椭圆形的钢筋混凝土墙具有更高的耐冲击性。

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