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Dynamic response due to cable rupture in a transmission lines guyed towers

机译:电缆破裂引起的动态响应塔

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The design of guyed lattice steel structures used in transmission lines (TL) is generally accomplished by static analysis, in order to simplify the dynamic actions, which are represented by "equivalent static loads". However, the static response to this type of structure is not always sufficient for design purposes, since such structures are lightweight, slender and that are always subject to dynamic nature action, except the own weight. Therefore, a dynamic analysis is critical to get a more precise result in terms of stresses on the bars and nodal displacements. In this context, this paper deals with the static and dynamic response evaluation of guyed lattice steel towers of TLs submitted to dynamic action of rupture cable. For this purpose, numerical models of isolated tower and completed stretch of TL were developed, including all components. The models are subjected to static analysis through "equivalent static loads" application coming from the rupture cable and dynamic analysis, in the time domain, using the Direct Integration Method (DIM) of equations of motion explicitly, with central finite differences for the problem solution. Finally, the results of static and dynamic analysis are compared, specifically the peak and final values (after the structure stops vibrating) with the static response values, in order to verify the dynamic amplification generated in the most realistic model against the results obtained from the model used in the usual design practice.
机译:在传输线(TL)中使用的具有静态晶格钢结构的设计通常通过静态分析来实现,以简化由“等效静载荷”表示的动态动作。然而,对这种类型的结构的静态响应并不总是足以进行设计目的,因为这种结构是重量轻的,细长的并且总是受到动态性质动作的,除了自身的重量。因此,动态分析对于在杆和节点位移的应力方面得到更精确的结果至关重要。在这种情况下,本文涉及提交抗破裂电缆动态作用的TL的晶格钢塔的静态和动态响应评估。为此目的,开发了隔离塔的数值模型和完成的TL延伸,包括所有组件。通过“当量静态载荷”应用程序来进行静态分析,通过“等效静载荷”应用程序,在时域中,使用运动方程的直接集成方法(DIM)明确,在问题解决方案中具有中央有限差异。最后,比较了静态和动态分析的结果,具体地,峰值和最终值(在结构停止振动之后),以验证最真实模型中产生的动态放大,以防止从中获得的结果用于通常设计实践的模型。

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