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4D Multi-Scale Analysis of the Hybrid Zone for Cable-Stayed Bridges with Steel-Concrete Hybrid Girders

机译:钢-混凝土混合梁​​斜拉桥混合区的4D多尺度分析

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The cable-stayed bridge with steel-concrete hybrid girders is one of the most widely used bridge types in China. As the key sub-structure of this kind of bridge, the hybrid zone which consists of girders in the region jointing the steel girder and the concrete girder plays an important role securing the safety and good serviceability of the entire bridge, and consequently the study on the mechanical behavior of the hybrid zone is essential for both the analysis and design of the whole bridge. However, due to the strong dependence of the Saint-Venant Principle and significant influence of the Fuzzy Region which cannot be quantitatively determined, the traditional local-elaborate modeling method for the study is limited by its dim Saint-Venant Region-Fuzzy Region boundary, leading to unreliable analysis results and enormous trial and error works. To tackle this problem, the multi-scale modeling method is introduced in this paper, employing the flexible boundary conditions (flexible BCs) for the simulation of the complex boundary condition of the hybrid zone. The fourth dimension is time. In order to gain results closer to the realistic behavior of the bridge at the finished date, it is considered to model the construction process. A 4D multi-scale model of the hybrid zone is then established according to the prototype of an actual cable-stayed bridge project in Chongqing, China. Simultaneously, a local-elaborate model is built for comparison. Comparison study of the finite element models demonstrates that analysis results of the 4D multi-scale model are reliable without the influence of the Fuzzy Region. The model is more accurate, reliable and hence widely applicable. It is concluded that the 4D multi-scale modeling method may offer a new approach for the analysis and monitor of the hybrid zone for cable-stayed bridges with steel-concrete hybrid girders in the future.
机译:钢混混梁斜拉桥是中国使用最广泛的桥梁类型之一。作为这种桥梁的关键子结构,在钢梁与混凝土梁连接处由梁组成的混合区在确保整个桥梁的安全性和良好的使用性中起着重要的作用,因此对桥的研究混合区的力学性能对于整个桥梁的分析和设计都是至关重要的。但是,由于Saint-Venant原理的强烈依赖性以及模糊区域的巨大影响(无法定量确定),因此传统的局部精细建模方法受到其模糊的Saint-Venant区域-模糊区域边界的限制,导致不可靠的分析结果和大量的试验和错误工作。为了解决这个问题,本文引入了多尺度建模方法,利用柔性边界条件(flexible BCs)来模拟混合区的复杂边界条件。第四个维度是时间。为了获得更接近桥梁在完成日期时的实际行为的结果,可以考虑对施工过程进行建模。然后,根据中国重庆市某实际斜拉桥项目的原型,建立了混合区的4D多尺度模型。同时,建立了局部详细模型以进行比较。有限元模型的比较研究表明,在不受模糊区域影响的情况下,4D多尺度模型的分析结果是可靠的。该模型更加准确,可靠,因此具有广泛的适用性。结论是:4D多尺度建模方法可能为钢混凝土混合梁​​斜拉桥混合区的分析和监测提供一种新的方法。

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