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Study on midtower longitudinal stiffness of three-tower four-span suspension bridges with steel truss girders

机译:钢桁桁架三塔四跨悬索桥中塔纵向刚度研究

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摘要

The determination of midtower longitudinal stiffness has become an essential component in the preliminary design of multi-tower suspension bridges. For a specific multi-tower suspension bridge, the midtower longitudinal stiffness must be controlled within a certain range to meet the requirements of sliding resistance coefficient and deflection-to-span ratio. This study presents a numerical method to divide different types of midtower and determine rational range of longitudinal stiffness for rigid midtower. In this method, influence curves of midtower longitudinal stiffness on sliding resistance coefficient and maximum vertical deflection-to-span ratio are first obtained from the finite element analysis. Then, different types of midtower are divided based on the regression analysis of influence curves. Finally, rational range for longitudinal stiffness of rigid midtower is derived. The Oujiang River North Estuary Bridge which is a three-tower four-span suspension bridge with two main spans of 800m under construction in China is selected as the subject of this study. This will be the first three-tower fourspan suspension bridge with steel truss girders and concrete midtower in the world. The proposed method provides an effective and feasible tool for engineers to design midtower of multi-tower suspension bridges.
机译:中塔纵向刚度的确定已成为多塔悬索桥初步设计的重要组成部分。对于特定的多塔式悬索桥,必须将中塔的纵向刚度控制在一定范围内,以满足滑动阻力系数和挠曲跨度比的要求。这项研究提出了一种数值方法来划分不同类型的中塔,并确定刚性中塔的纵向刚度的合理范围。在这种方法中,首先通过有限元分析得出中塔纵向刚度对滑动阻力系数和最大垂直挠曲跨度的影响曲线。然后,根据影响曲线的回归分析,划分不同类型的中塔。最后,得出了刚性中塔纵向刚度的合理范围。 China河北河口大桥是中国正在建设的两座主跨为800m的三塔四跨悬索桥。这将是世界上第一座具有钢桁架梁和混凝土中塔的三塔四跨悬索桥。该方法为工程师设计多塔悬索桥的中塔提供了有效可行的工具。

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