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Nonlinear Earthquake Response Analysis of A New RC Frame Multi-ribbed Composite Walls Structure

机译:新型RC架多罗纹复合墙体结构的非线性地震响应分析

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A new RC frame multi-ribbed composite walls structure is provided by using low yield strength steel. Two calculating structures are analyzed which one is the RC frame shear wall structure used as a comparison, and the other is the RC frame multi-ribbed composite walls structure. The nonlinear earthquake responses of the structures are calculated by using program IDARC2D. The nonlinear dynamic analysis models of the structures are established with retrogressive three-linear resilience model for beam, column and RC shear wall elements, while a smooth hysteretic model is proposed for representing low yield strength steel panels. The nonlinear dynamic time-history analysis of the structures under horizontal earthquake waves has been carried out. The earthquake responses of the structures and energy dissipation are studied, which provide more data information for the comprehension of earthquake responses and seismic performance of the RC frame multi-ribbed composite walls structure. The calculating results show that the low yield strength steel panels have obvious seismic mitigation effects, and that RC frame multi-ribbed composite walls structure has good seismic capacity.
机译:通过使用低屈服强度钢提供新的RC框架多肋复合壁结构。分析了两个计算结构,该结构是使用作为比较的RC帧剪力墙结构,另一个是RC框架多肋复合壁结构。通过使用Program IDARC2D计算结构的非线性地震响应。结构的非线性动态分析模型与梁,柱和RC剪切壁元件的倒退三线弹性模型建立,而提出了一种光滑的滞后模型,用于代表低产量强度钢板。已经进行了水平地震波下结构的非线性动态动态历史分析。研究了结构和能量耗散的地震响应,为rc框架多罗纹复合壁结构的地震反应和地震性能提供了更多的数据信息。计算结果表明,低屈服强度钢板具有明显的地震缓解效果,并且RC框架多罗纹复合壁结构具有良好的地震能力。

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