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首页> 外文期刊>Journal of Constructional Steel Research >Modeling of retrofitted steel transmission towers
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Modeling of retrofitted steel transmission towers

机译:改造钢制输电塔的建模

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摘要

To meet the increased design loads from upgraded wind load standards and higher power demands, existing aging transmission towers are often in need of retrofitting. One effective way to increase the load carrying capacity of a tower structure is to reinforce its critical leg members through attaching additional elements with bolted cruciform connections. The effectiveness of the leg retrofitted method has been verified experimentally in both leg segments and tower systems. In this paper, a new modeling method for lattice transmission towers with retrofitted leg members was developed in STRAND 7 through the use of truss-beam elements to represent tower members, and spring elements to simulate bolted connections. Numerical results based on the new modeling method agreed well with those from previous experimental retrofitted tower tests. A parametric study showed that: (a) the cruciform connections have a high load-transfer performance in retrofitted steel lattice towers and thus are effective in enhancing the strength of the whole structure, (b) pre-loading in tower members delays the occurrence of the peak load-sharing rate and excessive pre-loading causes a significant reduction of structural strength, and (c) extra mid-panel connections, cruciform connections with higher slip-resistance and increased retrofitting member size can significantly enhance the structural load carrying capacity. (C) 2015 Elsevier Ltd. All rights reserved.
机译:为了满足更高的风载荷标准和更高的功率要求而增加的设计载荷,通常需要对现有老化的输电塔进行翻新。增加塔架结构承载能力的一种有效方法是通过将其他元件与螺栓形十字形连接件相连来加强其关键支腿构件。腿部改型方法的有效性已在腿部段和塔架系统中进行了实验验证。在本文中,STRAND 7通过使用桁架梁单元代表塔架构件和弹簧单元来模拟螺栓连接,开发了一种新的建模方法,该模型对带有加固支腿构件的格构式输电塔进行了建模。基于新的建模方法的数值结果与先前的实验塔改造试验的数值结果非常吻合。参数研究表明:(a)十字形连接在改造后的钢格塔中具有较高的载荷传递性能,因此有效地增强了整个结构的强度,(b)塔构件中的预载荷延迟了锚杆的出现。峰值负荷分担率和过大的预负荷会大大降低结构强度,并且(c)额外的中面板连接,具有较高防滑性的十字形连接和增加的翻新构件尺寸可以显着提高结构承载能力。 (C)2015 Elsevier Ltd.保留所有权利。

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