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Effects of central column aspect ratio on seismic performances of subway station structures

机译:中心柱纵横比对地铁车站结构抗震性能的影响

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The subway station structures have a contradiction in its design of the cross section of the central columns: larger aspect ratio increases the longitudinal traffic capacity, yet decreases the lateral seismic capacity. However, both capacities are important. Thus, finding a reasonable aspect ratio has become a significant problem to be studied in depth. In this article, a series of time history analyses are carried out on a typical two-story three-span subway station structure, and ultimate bearing capacity analysis of isolated columns of various sizes is performed. The static axial compression ratio (ranging from 0.13 to 0.68) and the aspect ratio (ranging from 0.04 to 26.67) are taken as parameters, and their influence on internal force and damage to the structure are explored. It is found that the increase in axial compression ratio of the columns increases both the compression and tension damage and reduces the seismic performance of the station structure. However, the influence of increasing the aspect ratio of columns on the seismic performance of structures is more complicated. The compression and tension damage rises first (ranging from 0.04 to 1.67) and then decreases (greater than 6.67), while the tension damage of the structure increases monotonously. Finally, (0.15, 0.6) is given as the recommended aspect ratio range.
机译:地铁车站的结构在中心柱的横截面设计上存在矛盾:更大的纵横比会增加纵向交通能力,但会降低横向地震能力。但是,这两种能力都很重要。因此,找到合理的纵横比已经成为需要深入研究的重要问题。在本文中,对典型的两层三跨地铁车站结构进行了一系列时程分析,并对各种尺寸的隔离柱进行了极限承载力分析。以静态轴向压缩比(范围为0.13至0.68)和长宽比(范围为0.04至26.67)作为参数,并探讨它们对内力和结构损伤的影响。已经发现,柱子的轴向压缩比的增加既增加了压缩和拉伸损伤,又降低了车站结构的抗震性能。但是,增加柱高宽比对结构抗震性能的影响更为复杂。压缩和拉伸损伤首先升高(范围从0.04到1.67),然后降低(大于6.67),而结构的拉伸损伤则单调增加。最后,给出(0.15,0.6)作为推荐的宽高比范围。

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