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Investigating Different Horizontal Bracing Schemes on the Deflection and Behavior of Latticed Steel Transmission Line Towers

机译:研究钢质输电线路铁塔挠度和性能的不同水平支撑方案

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In steel lattice transmission line towers, an internal horizontal bracing diaphragm is required to redistribute shear forces along the structure and to provide enough rigidity. Horizontal bracing is used in various configurations in a square layout to provide a stiffer system to assist in reducing distortion caused by nonsymmetric loads and oblique wind loads. The spacing of bracing diaphragm is assigned according to general stiffness requirements to maintain tower geometry, while the brace configuration could vary in complexity and adequacy. The main objective of this study is to examine the effect of various horizontal bracing schemes currently used in the industry. Six different bracing schemes are studied on three different tower types. The tower models were analyzed under several load cases including gravity and environmental loads, oblique wind load, cable loads, and maintenance and construction loads. The analysis of the schemes is carried with reference to both the tower lateral deflection and internal forces development in horizontal braces. The results of the analysis present recommendations on the most efficient diaphragm bracing scheme.
机译:在钢格架输电线塔中,需要一个内部水平支撑隔膜来沿结构重新分配剪切力并提供足够的刚度。水平支撑在正方形布局中以各种配置使用,以提供更硬的系统,以帮助减少由非对称载荷和倾斜风载荷引起的变形。支撑隔板的间距是根据一般的刚度要求分配的,以保持塔架的几何形状,而支撑结构的复杂性和适当性可能会有所不同。这项研究的主要目的是研究目前行业中使用的各种水平支撑方案的效果。在三种不同的塔架类型上研究了六种不同的支撑方案。在几种载荷情况下分析了塔架模型,包括重力载荷和环境载荷,斜向风载荷,电缆载荷以及维护和建筑载荷。该方案的分析参考了塔架的侧向挠度和水平支撑中的内力发展。分析结果提出了关于最有效的隔膜支撑方案的建议。

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