Approximate method for calculating the magnetic field of 330-750 kV high-voltage power line in maintenance area under voltage

V. Rozov, S. Y. Reutskyi, D. Y. Pelevin, K. Kundius
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引用次数: 4

Abstract

Problem. In order to organize effective protection of working personnel from the action of strong electromagnetic influence when performing work on live high-voltage power lines (HVPL), the existing methods of calculating the magnetic field (MF) need to be developed in the direction of their simplification during operational use. Goal. The purpose of the work is to develop an approximate method and a simplified methodology for calculating the magnetic field flux density near the surface of the 330-750 kV HVPL wires for the prompt determination of the safe distance of the working personnel to the surface of the HVPL wires at the current value of their operating current. Methodology. A new approximate method of calculating the flux density of the MF in the area of work on live HVPL based on the Biot-Savart law and determining the maximum values of the flux density of the MF on the axes of symmetry N of the suspension of N wires, which are decisive for the protection of working personnel, is proposed. Results. Exceeding the maximum acceptable level of the MF for individual power lines at their nominal currents, adopted in the European Union, and the need to implement measures to reduce MF were revealed. Originality. It is shown that the distribution of the 330-750 kV HVPL near N of its split wires with an error of no more than 2.5 % can be determined by the current of only one of the phases of the HVPL. This distribution of MF, which is uneven, is determined by the order of axial symmetry N with the maximum values of the flux density of the MF lying on the axes of symmetry N of the suspension of the phase wires. Practical value. The development of an approximate method and a simplified methodology for calculating the flux density of the MF near the surface of the wires of 330-750 kV HVPL, which allows you to quickly, without the use of a computer, calculate the safe distance to the wires of a specific HVPL at the current value of its operating current, as well as determine the necessary measures for the protection of personnel from the MF, which can be implemented either by physically limiting the minimum distance from the worker's body to the surface of the wires to a dangerous one, or by necessary reduction of the HVPL operating current during repair work. Verification. An experimental verification of the proposed method and methodology was carried out on a laboratory installation with a mock-up of a phase of a 330 kV HVPL from AC 400 type wires at 1500 A current, which confirmed the correctness of the proposed calculation relationships.
330 ~ 750kv检修区高压线电压下磁场的近似计算方法
问题。为了有效地保护工作人员在高压带电电线上工作时免受强电磁影响的作用,在实际使用过程中,现有的磁场(MF)计算方法需要朝着简化的方向发展。的目标。本工作的目的是开发一种近似方法和简化方法,用于计算330-750 kV HVPL导线表面附近的磁场通量密度,以便在其工作电流的电流值下迅速确定工作人员到HVPL导线表面的安全距离。方法。本文提出了一种基于Biot-Savart定律计算电路基上工作区域中频磁通密度的新近似方法,并确定了N线悬置对称N轴上中频磁通密度的最大值,这对工作人员的保护起着决定性的作用。结果。揭示了欧盟采用的个别电力线在其标称电流下超过最大可接受的MF水平,以及实施降低MF措施的必要性。创意。结果表明,330 ~ 750kv HVPL在其分岔线N附近的分布,仅用HVPL的一个相的电流就可以确定,误差不超过2.5%。这种不均匀的中频分布是由对称轴N的顺序决定的,其磁通密度的最大值位于相线悬吊的对称轴N上。实用价值。开发了一种近似方法和简化方法,用于计算330-750 kV HVPL电线表面附近MF的磁通密度,这使您可以快速,无需使用计算机,在其工作电流的电流值下计算到特定HVPL电线的安全距离,以及确定保护人员免受MF的必要措施。这可以通过物理上限制工人身体到电线表面的最小距离来实现,也可以通过在维修工作期间必要地减少HVPL的工作电流来实现。验证。在实验室装置上对所提出的方法和方法进行了实验验证,并使用AC 400型导线在1500 a电流下的330 kV HVPL相模型进行了验证,证实了所提出计算关系的正确性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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