Full-coverage-type lightning protection device for overhead transmission lines

A technology for overhead transmission lines and lightning protection devices, which is applied in the installation of cables, electrical components, installation of lighting conductors, etc., can solve the problems of inability to meet the needs of lightning protection, the span of power towers is large, and the protection range is exceeded, so as to achieve good prevention and protection. Function, lightning protection angle expansion, the effect of extending the protection range

Inactive Publication Date: 2014-07-30
STATE GRID CORP OF CHINA +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0031] The existing lightning protection methods still have defects, such as improper size matching, etc., which still cannot meet the needs of lightning protection
[0033] 1. Phase A and Phase C are within the protection angle of 25°lightning conductors, while phase B is covered by the intersection of lightning conductors, but strictly observed, it is outside the protection angle;
[0034] 2. In high mountains and rivers and lakes, power poles and towers often have large spans, heavy sag of transmission lines, and the largest swing with the wind. The wires are usually within the protection angle, but they may exceed the protection range under strong winds;

Method used

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  • Full-coverage-type lightning protection device for overhead transmission lines
  • Full-coverage-type lightning protection device for overhead transmission lines
  • Full-coverage-type lightning protection device for overhead transmission lines

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Embodiment Construction

[0048] Figure 4It shows a full-coverage lightning protection device for overhead transmission lines, including lightning protection wires 4 arranged above the transmission lines and parallel to the transmission lines. There are three lightning protection wires 4: the middle one is located in the middle one Directly above the transmission line, the left and right lightning protection lines are arranged symmetrically. Among them, the protection angle α of the left lightning protection line to the left transmission line is 0° (that is, the left lightning protection line is located at the left transmission line directly above); the protection angle α of the right lightning conductor to the right transmission line is 0° (that is, the right lightning conductor is located directly above the right transmission line). When the transmission line is 220kV, the protection angle α (normally 20-30°) is improved to 0°, the vertical distance between the left lightning protection line and the...

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Abstract

A full-coverage-type lightning protection device for overhead transmission lines comprises three lightning conductors which are arranged above the transmission lines and are parallel to the transmission lines. The middle lightning conductor is located over the middle transmission line, and the left lightning conductor and the right lightning conductor are symmetrically arranged in a left-right mode, wherein the protection angle alpha between the left lightning conductor and the left transmission line is 0 degree. The lightning protection for the three-phase transmission lines by the full-coverage-type lightning protection device is free of dead corners and more comprehensive. Besides, the full-coverage-type lightning protection device has the advantages of being low in improvement cost, convenient to construct and more reliable in lightning protection.

Description

technical field [0001] The invention relates to a lightning protection device, in particular to an improved and full-coverage lightning protection device for overhead power transmission lines. Background technique [0002] Thundercloud discharge causes lightning overvoltage in the power system, or atmospheric overvoltage. [0003] There are two common overvoltages in overhead lines: the first is the overvoltage caused by lightning strikes near the overhead lines, and the overvoltage on the transmission line through electromagnetic induction; the second is the overvoltage generated by lightning directly hitting the wires. There are three specific situations: [0004] 1. Lightning strikes the top of the tower; 2. Lightning strikes the space part of the lightning conductor; 3. Bypassing the lightning conductor and striking the conductor. [0005] Lightning strike faults are divided into two types according to their nature: [0006] 1) Recoverable: after the lightning flashov...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H02G13/00
Inventor 沈澜万刚魏文伟
Owner STATE GRID CORP OF CHINA
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