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Nonlinear Analysis of Spatial Cable of Long-Span Cable-Stayed Bridge considering Rigid Connection

机译:考虑刚性连接的大跨度斜拉桥空间电缆非线性分析

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To determine the cable sag effect and solve the rigid connection problem at cable ends of a long-span cable-stayed bridge, a two-node spatial catenary cable element with arbitrary rigid arms is developed. Using the finite rotation formula of the space vector and a differential method, the incremental relation between displacement and force at both ends of the rigid arm is given. Then, explicit expression of the tangent stiffness matrix of the element with arbitrary rigid arms is derived based on the catenary equations. Two numerical examples are provided to verify the validity of the new element. A long-span cable-stayed bridge application model is established, and the cables are simulated using three methods. The results show that the rigid end effect has influence on displacements, bending moments and rigidity and should not be ignored. The catenary cable element with arbitrary rigid arms can be used to simulate the geometric nonlinear mechanical behavior of the cables and can well solve the rigid connection problem.
机译:为了确定悬垂效应并解决大跨度斜拉桥两端的刚性连接问题,开发了具有任意刚性臂的两节点空间悬链线单元。利用空间矢量的有限旋转公式和微分法,给出了刚性臂两端位移与力之间的增量关系。然后,基于悬链线方程,推导了具有任意刚度臂的单元的切线刚度矩阵的显式表达式。提供了两个数值示例来验证新元素的有效性。建立了大跨度斜拉桥的应用模型,并通过三种方法进行了仿真。结果表明,刚性末端效应会影响位移,弯矩和刚度,因此不容忽视。带有任意刚性臂的悬链电缆单元可以用来模拟电缆的几何非线性机械性能,并可以很好地解决刚性连接问题。

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