Test method used for transmission line ice coating disconnection

A technology of transmission line and test method, applied in the field of wire breakage load testing, can solve the problems affecting the accuracy of the results of dynamic simulation analysis of wire breakage, and achieve the effect of improving the simulation analysis accuracy

Active Publication Date: 2012-06-20
CHINA ELECTRIC POWER RES INST +1
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AI Technical Summary

Problems solved by technology

In addition, the damping has a great influence on the attenuation process of the broken line response. In the previous experimental research, the damping of the tower line system was not tested. Most of the numerical analysis used an assumed value based on experience, which affected the accuracy of the dynamic simulation analysis results of the broken line. precision

Method used

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  • Test method used for transmission line ice coating disconnection
  • Test method used for transmission line ice coating disconnection
  • Test method used for transmission line ice coating disconnection

Examples

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Embodiment 1

[0077] The invention provides a disconnection test method for an ice-coated conductor of a power transmission line. This method comprehensively considers the influence of factors such as wire type, ice thickness, and wire initial tension, and has better applicability and higher accuracy than the traditional ice-free disconnection test method.

[0078] In order to achieve the above object, the present invention builds a continuous 3-speed, 4-bar, 3-line model, and the test device is arranged as attached figure 1 shown. Use the method of binding and ice-coated steel wire ropes to simulate the ice coating of the wire, install the disconnection device at the mid-span position of the side rail, and design the test conditions according to the wire type and the thickness of the ice coating, and test the mid-span of the middle rail under each working condition The attenuation curve of point lateral displacement and the time-history curve of wire breakage tension of unbroken wires are...

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Abstract

The invention provides a test method used for transmission line ice coating disconnection. In the method, the influences of the factors such as the wire model, the ice coating thickness and wire initial tension and the like are comprehensively considered, and the method has better adaptability and higher accuracy. The test method provided by the invention comprises the following steps of constructing a serial three-gear four-rod three-line model; simulating wire ice coating by using a method of a heavy steel wire rope adopting binding and ice coating and the like; installing a disconnection trip mechanism at a side gear midspan position; testing a transverse displacement decrement curve and a non-disconnection gear disconnection tension travel time curve of an intermediate gear midspan point in each working condition on the basis that test working conditions are designed in accordance with different wire models and ice coating thicknesses; and determining the ice coating wire damping ratio and a wire tension dynamic shock factor to finally provide a basis for the tower disconnection load value of an ice coating zone. The test method comprises the following steps: designing a disconnection test line section, calculating the weight of ice coating, carrying out damping identification on the ice coating wire and testing and analyzing the disconnection tension. The method provided by the invention has the advantages of simple theory, reliable computational result, and provides a basis for the construction of a transmission line.

Description

technical field [0001] The invention belongs to the field of wire breakage load testing in power transmission line tower load testing, and specifically relates to a power transmission line ice-coated wire breakage test method. Background technique [0002] Meteorological disasters such as icing, galloping, and strong winds may cause disconnection of transmission line conductors or ground wires. Overhead conductors and towers are easily covered with ice in winter. Severe icing and conductor galloping caused by icing are the main reasons for disconnection of high-voltage transmission lines and collapse of towers. Icing thickness is an important parameter that must be carefully studied and calculated when designing overhead high-voltage transmission lines. Calculating the stress of overhead high-voltage conductors at different ice thicknesses is of great significance for ensuring the safe operation of transmission lines. [0003] In many areas of our country, there have been a...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G01M7/08
Inventor 杨风利张子富邢海军杨靖波李清华朱宽军刘胜春刘臻韩军科丁平吴国强
Owner CHINA ELECTRIC POWER RES INST
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