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考虑温度应力的某大底盘双塔结构裙楼楼板地震反应分析
引用本文:宋琛琛,于明博.考虑温度应力的某大底盘双塔结构裙楼楼板地震反应分析[J].佳木斯大学学报,2014(5):691-695.
作者姓名:宋琛琛  于明博
作者单位:1. 同济大学结构工程与防灾研究所,上海,200092
2. 中建三局集团有限公司建筑设计院,武汉,430016
摘    要:大底盘双塔结构是近年来工程中广泛应用的一种结构形式,其结构的抗震性能有其自身的特殊性和复杂性.目前国内对于此类复杂高层建筑,往往只专注于对其抗震性能的研究,对结构温度应力的考虑则没有引起足够的重视.结构整体在不同温度场的作用下,底盘大面积的混凝土楼板必定是受温度影响最显著的结构构件之一.但在具体设计中,无论是专用计算程序,还是主流的结构设计软件,都没有对大底盘楼板做进一步定量的分析.针对上述问题,本文通过有限元软件SAP2000建模对考虑温度和地震作用下的某大底盘多塔结构进行了反应谱分析,定量地分析了温度作用对大底盘楼板的内力分布和抗震性能的影响.

关 键 词:大底盘双塔结构  温度应力  复杂高层建筑抗震

Seismic Analysis of The Enlarged Base of Twin-towers Structure Considering Temperature Stress
SONG Chen-chen,YU Ming-bo.Seismic Analysis of The Enlarged Base of Twin-towers Structure Considering Temperature Stress[J].Journal of Jiamusi University(Natural Science Edition),2014(5):691-695.
Authors:SONG Chen-chen  YU Ming-bo
Institution:SONG Chen-chen, YU Ming-bo ( 1. Institute of Structural Engineering and Disaster Reduction, Tongji University, Shanghai 200092, China ;2. The Third Chinese Con- struction Engineering Bureau Co. , LTD., Wuhan 430016, China)
Abstract:Two-tower structure with enlarged base is widely applied in practical engineering .The aseis-mic behavior has its own particularity and complexity .The currently study on two-tower structure with enlarged base only focused on the aseismic behavior and the consideration of the temperature stress was rarely taken into account .In uniform temperature field , an enlarged concrete base is definitely one of the most significant member affected by temperature .But in the concrete design , no matter a special computer program or the main structure design software , further quantitative analysis on the enlarged base was not taken .To address the above problem , the aseismic behavior of structure under the combined effect of temperature and seismic action was discussed un -der response spectrum analysis using the finite element analysis software SAP 2000 .The distribution of internal force and aseismic performance of the slab under temperature effect were analyzed .
Keywords:two-tower structure with enlarged base  temperature stress  complex tall building ’ s aseis-mic behavior
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