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Seismic performance of a 10-story RC box-type wall building structure

机译:10层RC箱式墙建筑结构的抗震性能

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摘要

The purpose of this study is to evaluate the seismic performance of high-rise reinforced concrete (RC) box-type wall structures commonly used for most residential buildings in Korea. For this purpose, an analytical model was calibrated with the results of the earthquake simulation tests on a 1: 5 scale 10-story distorted model. This calibrated model was then transformed to a true model. The performance of the true model in terms of the stiffness, strength, and damage distribution through inelastic energy dissipation was observed with reference to the earthquake simulation test results. The model showed high overstrength factors ranging from 3 to 4. The existence of slab in this box-type wall system changed the main resistance mode in the wall from bending moment to tension/compression coupled moment through membrane actions, and increased the overall resistance capacity by about 25 similar to 35%, in comparison with the common design practice of neglecting the slab's existence. The flexibility of foundation, which is also commonly neglected in the engineering design, contributes to 30 similar to 50% of the roof drift in the stiff direction containing many walls. The possibility of concrete spalling and reinforcement buckling and fracture under the maximum considered earthquake (MCE) in Korea appears to be very low when compared with the case of the 2010 Concepcion, Chile earthquake.
机译:这项研究的目的是评估韩国大多数住宅建筑中常用的高层钢筋混凝土(RC)箱型墙结构的抗震性能。为此,在地震模拟测试结果的基础上,以1:5比例的10层变形模型对分析模型进行了校准。然后将此校准模型转换为真实模型。参照地震模拟测试结果,观察了真实模型在通过非弹性能量耗散而获得的刚度,强度和损伤分布方面的性能。该模型显示出3到4的高超强度因子。这种箱形墙系统中平板的存在通过膜的作用将墙体的主要阻力模式从弯矩变为拉压耦合弯矩,并增加了总阻力能力与忽略板坯存在的常见设计实践相比,大约减少了25%,接近35%。地基的灵活性在工程设计中通常也被忽略,它在包含许多墙的刚性方向上贡献了30%,约占屋顶位移的50%。与2010年智利康塞普西翁大地震相比,在韩国考虑的最大地震(MCE)下,混凝土剥落和钢筋屈曲和破裂的可能性似乎很小。

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