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Dynamic analysis of transmission tower-line system subjected to wind and rain loads

机译:风雨荷载作用下输电塔线系统的动力分析

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In order to study the dynamic response of transmission tower-line system induced by wind and rain loads, the calculating method of wind and rain loads acting on the transmission conductor is presented. The wind tunnel test, conducted by Kikuchi et al. (2003), is introduced to determine the drag coefficient under both wind and rain excitations, which is a key parameter to estimate the wind and rain loads for the transmission conductor. Then the three-span conductor and tower-line system are modeled to perform the dynamic analysis subjected to wind and rain loads, of which the results demonstrate that the maximum percentage of average displacement induced by the rain loads relative to the wind loads can reach to 22.00%, indicating strongly that the effect of rain load on the response of tower-line system is not negligible. Meanwhile the influence of wind attack angle on the response of tower-line system induced by wind and rain loads is investigated, and the results show that the most unfavorable wind attack angle is 90 and the rain load has no effect on the most unfavorable wind attack angle. The conductors made up of trapezoidal wires are used to examine the effects of wind and rain loads, and therefore some of the models and findings of the present contribution may not always be applicable. All in all, it can be stated that the rain load has an important effect on the response of tower-line system and should be given more attention. (C) 2016 Elsevier Ltd. All rights reserved.
机译:为了研究风雨荷载引起的输电塔线系统的动力响应,提出了作用在输电导线上的风雨荷载的计算方法。菊池等人进行的风洞试验。 (2003),被引入来确定风和雨的激励下的阻力系数,这是估计传输导体的风和雨负荷的关键参数。然后对三跨导体和塔线系统进行建模,以进行风和雨荷载的动力分析,结果表明,雨荷载引起的平均位移相对于风荷载的最大百分比可以达到22.00%,强烈表明雨水负荷对塔线系统响应的影响不可忽略。同时研究了风攻角对风雨荷载引起塔架系统响应的影响,结果表明,最不利的风攻角为90°,雨荷载对最不利的风攻没有影响。角度。梯形导线组成的导体用于检查风雨荷载的影响,因此,本贡献的某些模型和发现可能并不总是适用。总而言之,可以说,雨水负荷对塔线系统的响应有重要影响,应引起更多关注。 (C)2016 Elsevier Ltd.保留所有权利。

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