Study of the Impact Irregular Concrete Facilities with the Shear Walls Based: The Effect of Soil-Structure Interaction with ABAQUS Software

Wisam Fawzi Aljuhaishi, Javad Esfandiari
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Abstract

In the present study, the effect of irregularity of structures of the concrete with special shear walls has been analyzed and modeled by considering the effect of soil-structure interaction by dynamic analysis method with ABAQUS software. The results are presented in the form of diagrams with different soil interaction conditions, the effect of the number of layers was investigated for different soils. The results showed that the bearing system of the flexural frame and the concrete shear wall under the lateral load of the earthquake have good strength and ductility, which makes this issue. This structural system should be used for cities with very high earthquake risk. As the number of floors increases, the effect of the shear walls on increasing the bearing capacity decreases. As the number of floors increases, the final displacement of the frame increases. The results showed that for soil type 1(hard soil which Vs=1000 m/s, v=0.15, q=50000 Kg/m2, P=2000 Kg/m3, r=0.5 m) structural system of concrete shear walls with better displacement, maximum structural stiffness, better behavior was observed in the structure. Three-story frame with concrete shear wall has a significant increase compared to similar frames with more floors, which shows the good performance of this system in structures with fewer floors.
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基于剪力墙的冲击不规则混凝土设施研究:使用 ABAQUS 软件研究土与结构相互作用的影响
在本研究中,通过使用 ABAQUS 软件,采用动态分析方法,考虑到土壤与结构相互作用的影响,对具有特殊剪力墙的不规则混凝土结构的影响进行了分析和建模。结果以不同土壤相互作用条件下的图表形式呈现,并研究了不同土壤层数的影响。结果表明,在地震侧向荷载作用下,挠性框架和混凝土剪力墙的承载系统具有良好的强度和延性,这使得这一问题得以解决。这种结构体系应该用于地震风险非常高的城市。随着楼层数的增加,剪力墙对提高承载力的作用减小。随着楼层数的增加,框架的最终位移也会增加。结果表明,对于土壤类型 1(硬土,Vs=1000 m/s,v=0.15,q=50000 Kg/m2,P=2000 Kg/m3,r=0.5 m),混凝土剪力墙结构系统具有更好的位移、最大的结构刚度和更好的结构行为。采用混凝土剪力墙的三层框架与楼层较多的类似框架相比,位移显著增加,这表明该系统在楼层较少的结构中具有良好的性能。
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