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A comparative case study on seismic design of tall RC frame-core-tube structures in China and USA

机译:中美高层钢筋混凝土框架-心筒结构抗震设计比较研究

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摘要

To evaluate the major differences between the Chinese and the United States (US) seismic design codes from a structural system viewpoint, a comparative case study is conducted on a tall frame-core-tube building, a typical type of reinforced concrete system widely constructed in both countries. The building, originally designed using the US seismic design code, is firstly redesigned according to the Chinese seismic design code based on the information provided by the Pacific Earthquake Engineering Research Center. Secondly, the member dimensions, the dynamic characteristics, the seismic design forces and the material consumptions of the two designs are compared in some detail. Subsequently, nonlinear finite element models of both designs are established to evaluate their seismic performances under different earthquake intensities. Results indicate that the seismic design forces determined by the Chinese response spectrum are larger than those determined by the US spectrum at the same seismic hazard level. In addition, the upper-bound restriction for the inter-story drift ratio is more rigorously specified by the Chinese code. These two aspects have led to a higher level of material consumption for a structure designed by the Chinese code. Despite of the above discussions, the two designs yield roughly similar structural performances under earthquakes. Copyright (c) 2015 John Wiley & Sons, Ltd.
机译:为了从结构系统的角度评估中美(美国)抗震设计规范之间的主要差异,我们对一个高框芯管建筑进行了比较案例研究,该框架是一种广泛使用于美国的钢筋混凝土系统。两国。最初使用美国地震设计规范设计的建筑物,是根据太平洋地震工程研究中心提供的信息,根据中国地震设计规范重新设计的。其次,比较了两种设计的构件尺寸,动力特性,抗震设计力和材料消耗。随后,建立两种设计的非线性有限元模型,以评估其在不同地震烈度下的抗震性能。结果表明,在相同地震危险等级下,由中国响应谱确定的抗震设计力大于由美国谱确定的抗震设计力。此外,中文代码更严格地规定了层间漂移率的上限限制。这两个方面导致了由中文规范设计的结构的更高的材料消耗水平。尽管进行了上述讨论,但两种设计在地震作用下仍能产生大致相似的结构性能。版权所有(c)2015 John Wiley&Sons,Ltd.

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