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Experimental investigation on mechanism and mitigation of rain-wind-induced vibration of stay cables

机译:雨风诱导挡泥板雨风诱导振动的实验研究

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Rain-wind-induced vibration is one of the most severe vibrations for stay cables in long-span bridges. To clarify the mechanism of cable vibration and its aerodynamic countermeasures under two unfavorable refined rain-wind environments, wind tunnel tests were systematically conducted on cable sectional models with various surface processing schemes, including smooth surface, spiral protuberances, spiral dimples, straight dimples, and polyurea painting. Rivulet formation by cable vibrations under two unfavorable environments are discussed, and differences between mechanisms are preliminarily classified. The above schemes were investigated to determine their effectiveness in mitigating vibrations. Spiral protuberances had significant mitigating effects on cable vibration, and spiral protuberances of 0.011 height and 0.43 intervals nondimensionalized by the diameter of the cable were good enough to prevent rain-wind-induced vibrations. The effectiveness of dimples strongly depended on their arrangement on the cable surfaces. Polyurea painting reduced the possibility of large-amplitude vibration, but it also changed the unfavorable environmental conditions. (C) 2019 Elsevier Ltd. All rights reserved.
机译:雨风诱导的振动是长跨度桥梁保持电缆最严重的振动之一。为了澄清电缆振动的机制及其在两个不利的精制雨风环境下的空气动力学对策,系统地在具有各种表面处理方案的电缆截面模型上进行风洞测试,包括光滑的表面,螺旋突起,螺旋凹槽,直芯片和聚脲绘画。讨论了在两个不利环境下的电缆振动形成的Rivulet形成,并且机制之间的差异是预先分类的。研究了上述方案以确定其缓解振动的有效性。螺旋突起对电缆振动有显着的缓解效果,并且通过电缆直径为0.011高度和0.43间隔的螺旋突起足以防止雨风引起的振动。凹坑的有效性强烈地依赖于其在电缆表面上的布置。聚脲画减少了大幅度振动的可能性,但它也改变了不利的环境条件。 (c)2019年elestvier有限公司保留所有权利。

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