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玻璃天窗开合屋盖结构拼装定位控制及施工监测研究

Research on Assembly Construction,Positioning Control and its Detecting Technology for Retractable Roof Structure of Glass Skylight in Guiyang Southwest International Trade City

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【作者】 周海洋钟声周家文李元鑫曾峰李存宝

【Author】 Zhou Haiyang;Zhong Sheng;Zhou Jiawen;Li Yuanxin;Zeng Feng;Li Cunbao;China Railway Construction Group Co.Ltd.;College of Architecture and environment,Sichuan University;

【机构】 中铁建设集团有限公司四川大学建筑与环境学院四川大学水利水电学院

【摘要】 玻璃天窗开合屋盖结构是未来商业建筑的一种重要发展趋势,本文结合贵阳市西南国际商贸城玻璃天窗开合屋盖结构施工与监测,介绍了玻璃天窗异于其他开合屋盖结构体系的特点。由于其屋面材料具有自重大、易劳损的特点,玻璃天窗开合屋盖结构的制作、拼装和定位直接影响到开合机械运行的安全和稳定,故此类玻璃天窗开合屋盖结构的拼装和定位要求具有更高的安装精度。本文对玻璃天窗开合屋盖结构的构件制作、工艺流程及控制要求、屋盖结构支座定位、钢结构箱梁拼装及吊装方法、玻璃天窗网架及轨道安装方法等关键技术进行了总结。同时,还对工程现场的屋盖体系在不同受力工况和运行状态下振动信号和振动频率进行了监测研究,分析结果表明此项目开合屋盖拼装定位控制的施工方法和工艺流程完全能达到开合机械运行的精度要求,确保了玻璃天窗开合屋盖体系的安全和稳定,也为其他同类工程的玻璃天窗开合屋盖结构拼装定位控制及施工提供了参考依据。

【Abstract】 The retractable roof structures are developing technology for commercial buildings.The charecteristics of retractable roof structure of glass skylight,which is defferent with other retractable roof structure were introduced through an actual project in Guiyang southwest international trade city.Due to the heavy deadweight and easy-damaged feature of glass skylight,the safety and stability of the retractable roof system directly depends on the fabricating,asembly and positionling of each element of retractable roof structure of glass skylight.Therefore,more accurate methods and technologies are required in its construction.In this paper,the component fabrication,technological process and its control requirements,bearing positioning,asembly and lifting of the steel girder,setting of skylight rails were concluded and introduced.The vibration signals and frequencies in different force status and running state are detected and analyzed.The results show that the construction method and technological process of assembly and positioning which applied in the project can meet the requirement of accuracy control of the retractable roof structure of glass skylight,and it provides a helpful method to other similar projects.

【基金】 教育部长江学者创新团队(IRT1027)
  • 【文献出处】 土木建筑与环境工程 ,Journal of Civil,Architectural & Environmental Engineering , 编辑部邮箱 ,2014年S1期
  • 【分类号】TU758
  • 【被引频次】1
  • 【下载频次】74
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