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Experimental study on multi-panel retrofitted steel transmission towers

机译:多面板钢结构输电塔的试验研究

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Due to the increasing demands on power supply and telecommunication services, existing transmission towers are frequently being required to carry extra loads above their initial design limits. A range of methods have therefore been used to increase the capacity of existing towers by retrofitting them in some way. This paper addresses steel lattice transmission towers with main leg members retrofitted by steel angles through bolted double steel angle connectors, a method that is widely used in practice but to date with little experimental research to support it Three unreinforced tower models and four groups of retrofitted tower models with and without preloading have been tested in the structural laboratories at the University of South Australia. The experimental results verify the effectiveness of the retrofitting method. Load sharing analysis shows that axial loads can be effectively transferred between original tower members and reinforcing members through the bolted-splice system. Preloading reduces the load sharing in reinforcing members in the early loading stage but does not have significant influence on the ultimate strength of the whole structure.
机译:由于对电源和电信服务的需求不断增长,经常需要现有的输电塔承担超出其初始设计限制的额外负载。因此,已经采用了各种方法通过以某种方式进行改造来增加现有塔架的容量。本文研究的是通过螺栓固定双钢角连接器对主要支腿构件进行钢角改造的钢格架输电塔,这种方法在实践中被广泛使用,但迄今为止尚缺乏实验研究来支持它。三种非加强型塔模型和四组改造的塔带有和不带有预紧力的模型已经在南澳大利亚大学的结构实验室中进行了测试。实验结果证明了改进方法的有效性。载荷分担分析表明,轴向载荷可以通过螺栓连接系统有效地在原始塔构件和加强构件之间传递。预加载减少了早期加载阶段中增强构件的负载分担,但对整个结构的极限强度没有重大影响。

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