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The Effect of Cracking on Stiffness of Shear Walls under Lateral Loads

机译:横向荷载作用下开裂对剪力墙刚度的影响

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摘要

The lateral stiffness of buildings is one of the most important properties which define resistance to displacements under lateral loads. Moreover, it has a great impact on the natural period of the structures. Different stiffness’s values can ultimately affect the behavior of the structure under the seismic load and the lateral forces that will be applied to it. In this study the effect of cracking is studied on 2D shell thin cantilever shear wall by using ETABS. Multi linear elastic analysis is conducted with the ACI stiffness modifiers for each analysis step. The results showed that the cracks affect the value of the drift especially at the top of the high rise buildings and this will change the lateral stiffness and so change the fundamental period of the structures which lead to change in the applied shear force that comes from the earthquake. Finally, this study emphasizes that the finite element method can be considered as a good tool to predict the tensile stresses in the elements.
机译:建筑物的横向刚度是最重要的属性之一,它定义了在横向载荷下抵抗位移的能力。而且,它对结构的自然周期有很大的影响。不同的刚度值最终会影响结构在地震载荷下的性能以及将施加到结构上的横向力。在本研究中,使用ETABS研究了二维壳薄壁悬臂剪力墙的开裂效果。对于每个分析步骤,使用ACI刚度修改器进行多线性弹性分析。结果表明,裂缝影响了位移的值,特别是在高层建筑的顶部,这将改变横向刚度,从而改变结构的基本周期,从而导致施加的剪力的变化。地震。最后,本研究强调有限元方法可以被认为是预测单元中拉应力的良好工具。

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