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卡塔尔卢赛尔体育场次索结构传力规律研究 被引量:1
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作者 王海明 《建筑结构》 北大核心 2024年第7期100-106,共7页
卢赛尔体育场屋面索结构采用了轮辐式索桁架、内环索和单层双向索网组合索系,其中轮辐式索桁架和内环索属于主索结构,单层双向索网属于次索结构,主索和次索之间由撑杆连接。研究次索结构中某个索段长度调节时对自身及其他索段的影响,是... 卢赛尔体育场屋面索结构采用了轮辐式索桁架、内环索和单层双向索网组合索系,其中轮辐式索桁架和内环索属于主索结构,单层双向索网属于次索结构,主索和次索之间由撑杆连接。研究次索结构中某个索段长度调节时对自身及其他索段的影响,是索力控制和索网成型的重难点。采用降温升温法模拟索长的调节,分析了索长变化时相关索段索力的互相影响关系。当对某个索段进行长度调节时,其径向同轴线的其他索段索力变化不大。变化的索力主要传递到与调节索段首尾相连的其他索段,形成一条传力线,首尾相连的索段索力与主动调节的索力变化趋势一致,索力变化的幅度随着距离的增加而减小。在体育场的不同环向部位,或是在传力线上不同索段进行调节时,上述传力规律均适用。施工过程中的索力调节和索力监测数据验证了次索结构传力规律的正确性和实用性。 展开更多
关键词 卢赛尔体育场 组合索系 次索结构 主动调节 索力控制 索网成型 施工模拟 传力规律
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Numerical investigation of temperature gradient-induced thermal stress for steel–concrete composite bridge deck in suspension bridges 被引量:7
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作者 WANG Da DENG Yang +1 位作者 LIU Yong-ming LIU Yang 《Journal of Central South University》 SCIE EI CAS CSCD 2018年第1期185-195,共11页
A3D finite element model(FEM)with realistic field measurements of temperature distributions is proposed to investigate the thermal stress variation in the steel–concrete composite bridge deck system.First,a brief lit... A3D finite element model(FEM)with realistic field measurements of temperature distributions is proposed to investigate the thermal stress variation in the steel–concrete composite bridge deck system.First,a brief literaturereview indicates that traditional thermal stress calculation in suspension bridges is based on the2D plane structure with simplified temperature profiles on bridges.Thus,a3D FEM is proposed for accurate stress analysis.The focus is on the incorporation of full field arbitrary temperature profile for the stress analysis.Following this,the effect of realistic temperature distribution on the structure is investigated in detail and an example using field measurements of Aizhai Bridge is integrated with the proposed3D FEM model.Parametric studies are used to illustrate the effect of different parameters on the thermal stress distribution in the bridge structure.Next,the discussion and comparison of the proposed methodology and simplified calculation method in the standard is given.The calculation difference and their potential impact on the structure are shown in detail.Finally,some conclusions and recommendations for future bridge analysis and design are given based on the proposed study. 展开更多
关键词 suspension bridge steel–concrete composite bridge deck vertical temperature gradient finite element method thermal stress
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