基于力学原理的南京江北A1地块超高层结构设计

引用文献:

黄永强 周建龙 张洛 罗遥 汪大绥 傅晋申 杨成栋 陈颖智. 基于力学原理的南京江北A1地块超高层结构设计[J]. 建筑结构,2022,48(10):11-20.

HUANG Yongqiang ZHOU Jianlong ZHANG Luo LUO Yao WANG Dasui FU Jinshen YANG Chengdong CHEN Yingzhi. Structural design of super high-rise building in Nanjing Jiangbei A1 block based on the principle of mechanics[J]. Building Structure,2022,48(10):11-20.

作者:黄永强 周建龙 张洛 罗遥 汪大绥 傅晋申 杨成栋 陈颖智
单位:华东建筑设计研究院有限公司
摘要:南京江北A1地块超高层项目的建筑高度为499.8m,采用带伸臂桁架加强层的巨型拱支框架-核心筒结构。与已建成的超高层结构不同,本项目采用拱结构替代普通的环形桁架,实现了结构高效和建筑美观的融合。根据不同分区的结构布置和荷载,结合理论推导的合理拱轴线,以拱弯矩最小为设计原则确定了各分区的最优拱形。采用缓粘结预应力技术实现拱结构推力的自平衡,降低巨柱的次弯矩。对比了K形和X形伸臂桁架的结构效率,确定了最优的伸臂桁架布置。根据大震弹塑性分析结果,对加强层处核心筒墙体采取针对性加强措施。对在核心筒内采用C80高强混凝土的合理性进行了分析比较,可供类似超高层项目参考。
关键词:拱结构;合理拱轴线;预应力;虚功原理;高强混凝土
作者简介:黄永强,硕士,高级工程师,主要从事超高层、钢结构、减震结构和复杂结构设计,Email:hyq@ecadi.com。
基金:十三五国家重点研发计划项目(2018YFC0705800);“上海超高层建筑设计工程技术研究中心”建设项目(14DZ2252800);华建集团科研项目(19-1类-0142-结)。
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Structural design of super high-rise building in Nanjing Jiangbei A1 block based on the principle of mechanics
HUANG Yongqiang ZHOU Jianlong ZHANG Luo LUO Yao WANG Dasui FU Jinshen YANG Chengdong CHEN Yingzhi
(East China Architectural Design & Research Institute Co.,Ltd.)
Abstract: The height of super high-rise building in Nanjing Jiangbei A1 block is 499.8 m, which adopts a giant arch supported frame-core tube structure with outrigger truss reinforcement layer. Different from the existing super high-rise structure, this project adopts arch structure instead of ordinary belt truss, which realizes the integration of structural efficiency and architectural beauty. According to the structural arrangement and load of different zones, combined with the reasonable arch axis derived from the theory, the optimal arch shape of each zone was determined by taking the minimum arch bending moment as the design principle. The unbonded prestressing technology was used to realize the self balance of the thrust of the arch structure and reduce the secondary bending moment of the giant column. The structural efficiency of K-type and X-type outrigger trusses was compared, and the optimal layout of outrigger trusses was determined. According to the elastic-plastic analysis results of large earthquakes, targeted strengthening measures were taken for the core tube wall at the strengthening stroies. The rationality of using C80 high-strength concrete in core tube was analyzed, which can be used as a reference for similar super high-rise projects.
Keywords: arch structure; reasonable arch axis; prestress; virtual work principle; high-strength concrete
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