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Simplified seismic axial collapse capacity prediction model for moderately compressed reinforced concrete shear walls adjacent to transfer structure in tall buildings

机译:高层建筑中型压缩钢筋混凝土剪力墙中的简化地震轴向塌陷容量预测模型

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Nonseismically detailed reinforced concrete (RC) shear walls adjacent to transfer structure in tall buildings are found to have short shear spans and designed to hold considerable axial load. In a previous paper, a Modified Mohr's Axial Capacity Model was developed by the authors to estimate the axial collapse of these RC walls in seismic events, which is expressed as an axial load ratio devised based on classical Mohr's circle framework. It was noted that the previous model can be complicated and appears not suitable for direct adoption in engineering design check. Hence, in this paper, a new simplified seismic axial collapse capacity prediction model is formulated to improvise the previous model. This simplified model typifies the practical range of shear wall geometry, concrete strength, steel reinforcement stress and strain and reinforcement ratio. Simplified charts to estimate maximum shear stress are presented for quicker design check. The complex inelastic buckling stress calculation is simplified into graphs and design equations. A knife-edge feasible solutions zone is defined, expressed as an inequality function of axial-to-shear capacity ratio and additional axial stress induced by lateral shear. Recommendations are made based on results obtained from Genetic Algorithm search and further justified by parametric studies.
机译:发现与高层建筑中的转移结构相邻的非易接的钢筋混凝土(RC)剪切壁具有短剪切跨度并设计成保持相当大的轴向载荷。在先前的论文中,作者开发了一种改进的MoHR的轴向容量模型,以估计这些RC壁在地震事件中的轴向塌陷,其表示为基于经典MoHR圈框架设计的轴向载荷比。有人指出,以前的模型可能是复杂的并且看起来不适合在工程设计检查中直接采用。因此,在本文中,配制了一种新的简化地震轴向塌陷容量预测模型,以即使先前的模型。该简化模型表示剪力墙几何形状,混凝土强度,钢筋强力应力和应变和加固率的实用范围。提出了用于估计最大剪切应力的简化图表,以便更快地设计检查。复杂的无弹性屈曲应力计算简化为曲线图和设计方程。定义刀刃可行的解决方案区域,表示为轴向剪切容量比的不等式函数和横向剪切诱导的附加轴向应力。建议是基于从遗传算法搜索的结果进行的结果,并通过参数研究进一步证明。

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