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Aeolian Vibration of Conductors: Theory, Laboratory Simulation Field Measurement

机译:导体的风振:理论,实验室模拟和现场测量

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The conductors of transmission lines are subjected to a variety of motions caused by the wind. The most common motions are aeolian vibration, sub-conductor oscillation (bundled conductors), galloping (generally associated with a light ice coating) and wind sway. Unless controlled, motions of conductors can produce damage to the conductor and other elements of the transmission system that will negatively affect the reliability and serviceability of the system. Sub-conductor oscillations, galloping and wind sway are associated with higher wind velocities, and in the case of galloping a light to moderate ice coating is required to initiate the motion. These motions are generally characterized as low frequency, high amplitude. Aeolian vibration, which is the subject of this paper, is associated with smooth (non-turbulent) winds in the range of 2 MPH to 15 MPH, and can occur on a daily basis. In contrast to galloping and sub-conductor oscillations, aeolian vibration is characterized as high frequency, low amplitude motion. This paper describes the theory of aeolian vibration, simulation of aeolian vibration in the laboratory to test the performance of conductor and conductor hardware, with a focus on how vibration damper performance is measured and finally the methods used to monitor aeolian vibration in the field on operating transmission lines.
机译:传输线的导体会受到由风引起的各种运动的影响。最常见的运动是风沙振动,次导体振荡(导体捆扎),舞动(通常与轻冰层相关)和风向。除非进行控制,否则导体的运动会损坏导体和传输系统的其他元件,从而对系统的可靠性和可维护性产生负面影响。分导体的振动,舞动和风向与较高的风速相关,在舞动的情况下,需要轻至中度的冰层来启动运动。这些运动通常被表征为低频,高振幅。风沙振动是本文的主题,与2 MPH至15 MPH范围内的平稳(非湍流)风有关,并且每天都会发生。与舞动和次导体振动相反,风振是高频,低振幅的运动。本文介绍了风沙振动的理论,在实验室中模拟风沙振动以测试导体和导体硬件的性能,重点介绍了如何测量减振器的性能,最后介绍了在操作现场监测风沙振动的方法传输线。

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