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Anti-dancing torsional eddy current mass damper and optimization method thereof

A mass damper and optimization method technology, applied in the installation of electrical components, cables, overhead installation, etc., can solve the complex galloping mechanism of multi-split conductors, the literature reports and practical applications of ungalvanized torsional dampers, and the lack of theoretical research, etc. question

Active Publication Date: 2019-04-09
ZHEJIANG UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

[0003] At present, ultra-high voltage and ultra-high voltage lines usually use measures such as phase-to-phase spacers, phase-to-ground spacers, damping spacers, detuned pendulums, and eccentric weights to suppress conductor galloping. The phase-to-phase spacers and phase-to-ground spacers have been used in practice and have achieved certain results. effect, but the above-mentioned spacers are limited by the application scenarios, the former is suitable for compact lines, and the latter requires the line to have a small distance from the ground
The damping spacer optimizes the connection between the spacer and the wire, and reduces the force on the spacer when the wire dances, thereby increasing the durability of the spacer, but the suppression of galloping is not significant
In addition, the above three anti-dance measures still lack more in-depth theoretical research
Other anti-galling measures, such as detuned pendulums and eccentric weights, have theoretical support, but they have also been found in actual line applications. Under certain conditions, they will fail and may even lead to greater galloping amplitude of the line.
[0004] The galloping mechanism of multi-split conductors is complex, and the galloping frequency of large-gage lines is low
Torsional mass dampers have a wide range of application scenarios, are less restricted by line conditions, have clear theoretical support, and are convenient for engineering applications and parameter optimization. However, there are no literature reports and practical applications for anti-galling torsional dampers.

Method used

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  • Anti-dancing torsional eddy current mass damper and optimization method thereof
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  • Anti-dancing torsional eddy current mass damper and optimization method thereof

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Embodiment Construction

[0075] The present invention is described in further detail with reference to the accompanying drawings and specific embodiments.

[0076] The anti-dancing torsion steering eddy current mass damper 2 is taken as a whole, and its size is coordinated with the size of the sub-wire spacer 1, and the split wire is passed through the hole 101 of the sub-wire spacer 1. The sub-conductor spacer 1 is fixed with the fixed connecting piece 3, so that the housing 4 of the damper and the sub-conductor spacer 1 are rotated synchronously.

[0077] Inside the anti-dancing torsion steering eddy current mass damper 2, a power transmission shaft 7 is installed first, and the torque is transmitted between the power transmission shaft 7 and the housing 4 of the damper, and the torque is synchronously rotated. The torsion bearing 9 is used to connect the power transmission shaft 7 and the metal disc 8, and the torsion bearing 9 does not transmit torque and has no friction. A plurality of permanent...

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Abstract

The invention belongs to the technical field of overhead transmission lines, and particularly relates to an anti-dancing torsional eddy current mass damper and an optimization method thereof. The scheme of the invention is based on the in-depth study of the three-degree-of-freedom dancing of wires and the mass damper, passively controls the torsional vibration of the wires by using the mass damper, uses a metal disk as a mass unit, uses a torsional spring as a stiffness unit, and uses a permanent magnet as a damping unit. The scheme of the invention fully utilizes the characteristics of the three-degree-of-freedom dancing of split wires, well avoids the problem that the vertical vibration control needs to provide a large amount of motion space of the mass unit by adopting a method of controlling the torsional vibration, and can control the low-frequency dancing of the lines in a small size.

Description

technical field [0001] The invention belongs to the technical field of overhead transmission circuits, and in particular relates to an anti-galling torsion steering eddy current mass damper and an optimization method. Background technique [0002] With the increase of the transmission voltage level of transmission lines, multi-split conductors are widely used. The galloping of multi-split wires is usually accompanied by torsional vibration, and the torsional motion has a significant impact on the galloping of multi-split wires. Galloping will cause damage to hardware and flipping of wires, which will cause great harm to transmission lines. Improving the damping of the torsional direction of the transmission line can increase the energy consumption when the conductor is galloping, effectively inhibit the generation and development of the conductor galloping, and thus improve the safety performance of the transmission line. [0003] At present, ultra-high voltage and ultra-h...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H02G7/12H02G7/14
CPCH02G7/125H02G7/14
Inventor 楼文娟梁洪超温作鹏
Owner ZHEJIANG UNIV
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