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Construction Sequence Simulation for Partial Cable Stayed Truss Bridge with Single Pylon

机译:单塔局部电缆留桁架桥梁施工序列仿真

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Qiansimen Bridge, a part of Liangjiang Bridge in Chongqing city in China, is currently under construction by the Chinese contractor CCCC, Second Harbor Engineering Company Ltd. The bridge has been designed by T.Y. Lin International (China) as partially cable stayed bridge with steel truss girders and a single reinforced concrete pylon. The opening of the bridge is planned for July 2014. Each steel truss segment has a length of 16 m and forms an extremely heavy element of the bridge, which cannot be fabricated and erected in one piece. Stay cable forces vary between 10 000 and 15 000 kN during erection phase and in final state. Proper layout and adjustment of cable forces throughout the construction schedule is usually a tedious process. This paper presents an ingenious numerical simulation of the bridge construction sequence, where the erection process is accurately followed up by appropriate techniques. Result of the simulation is an optimized construction sequence of the steel truss, which on the one hand leads to a reasonable stress distribution in the truss elements and on the other hand allows for saving construction costs by avoiding multiple adjustments of stay cable forces during the construction process.
机译:Qiansimen Bridge,中国重庆市梁江大桥的一部分,目前正在建设中,由中国承包商CCCC,第二港工程有限公司该桥梁​​由T.Y设计。林国际(中国)用钢桁架梁和单钢筋混凝土幽门部分电缆呆桥。计划于2014年7月的桥梁开放。每个钢桁架段的长度为16米,形成一个极其重的桥元件,这不能在一件中制造和竖立。安装在安装期和最终状态下,保持电缆力在10 000和15 000 kN之间变化。在整个施工时表中适当的布局和调整电缆力通常是繁琐的过程。本文介绍了桥梁施工序列的巧妙数值模拟,其中通过适当的技术精确跟进勃起过程。仿真结果是钢桁架的优化结构序列,一方面导致桁架元件中的合理应力分布,另一方面,通过避免在施工期间避免保持缆绳力的多次调整来节省施工成本过程。

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