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Design analysis of the optimum configuration of self-anchored cable-stayed suspension bridges

机译:自锚式斜拉式悬索桥最佳配置的设计分析

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This paper describes a formulation to predict optimum post-tensioning forces and cable dimensioning for self-anchored cable-stayed suspension bridges. The analysis is developed with respect to both dead and live load configurations, taking into account design constrains concerning serviceability and ultimate limit states. In particular, under dead loads, the analysis is developed with the purpose to calculate the post-tensioning cable forces to achieve minimum deflections for both girder and pylons. Moreover, under live loads, for each cable elements, the lowest required cross-section area is determined, which verifies prescriptions, under ultimate or serviceability limit states, on maximum allowable stresses and bridge deflections. The final configuration is obtained by means of an iterative procedure, which leads to a progressive definition of the stay, hanger and main cable characteristics, concerning both post-tensioning cable stresses and cross-sections. The design procedure is developed in the framework of a FE modeling, by using a refined formulation of the bridge components, taking into account of geometric nonlinearities involved in the bridge components. The results demonstrate that the proposed method can be easily utilized to predict the cable dimensioning also in the framework of long span bridge structures, in which typically more complexities are expected in view of the large number of variables involved in the design analysis.
机译:本文介绍了一种公式,用于预测自锚式斜拉式悬索桥的最佳后张力和电缆尺寸。分析是针对静载和活载配置进行的,同时考虑了有关可维护性和最终极限状态的设计约束。特别是在恒载下,进行分析的目的是计算后张拉索力,以使梁和塔架的挠度最小。此外,在有功载荷下,对于每个电缆元件,确定了所需的最低横截面面积,该横截面面积在极限或可使用性极限状态下,针对最大允许应力和桥梁挠度验证了处方。最终的配置是通过迭代过程获得的,该过程导致了对后张拉电缆应力和横截面的斜拉,悬挂和主电缆特性的逐步定义。设计过程是在有限元建模的框架内开发的,其中考虑了桥梁构件所涉及的几何非线性,通过使用桥梁构件的改进公式。结果表明,在大跨度桥梁结构的框架中,所提出的方法也可以轻松地用于预测电缆尺寸,在这种情况下,考虑到设计分析中涉及的大量变量,通常会更加复杂。

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