基于三相电流导体两相多偶极子模型的住宅内变电站磁场模拟

©. V. Rozov, D.Ye, K. D. Pelevin, Kundius, V. Rozov
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引用次数: 0

摘要

问题。建在住宅建筑物内的10(6)/0.4 kV变电站在附近住宅内产生磁通量密度超过10 μT的磁场,对人口的健康构成威胁,因此对该磁场的研究与制定保护该磁场的方法有关。变电站外磁场的主要来源是其低压电流导体,其对总磁场电平的贡献在90%以上。多偶极子数学模型具有明确的物理解释,是一种很有前途的变电站磁场建模方法,对进一步发展人口保护方法具有重要意义。本文的目的是对众所周知的多偶极子模型进行修正,在此基础上对靠近居民楼的内置变电站电流导体的外磁场进行有限误差的计算。方法。提出了一种改进的变电站外磁场主源——三相低压电流导体的两相多偶极子数学模型,该模型与现有模型不同,它基于一个两相多偶极子模型,在不增加误差的情况下将计算区域的距离减半。验证。对修正后的三相100kva变电站磁场两相多偶极子模型在其全尺寸物理模型上进行了实验验证,并给出了实验结果,证实了计算与实验的吻合性,误差不超过7%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Simulation of the magnetic field in residential buildings with built-in substations based on a two-phase multi-dipole model of a three-phase current conductor
Problem. Substations 10(6)/0.4 kV built into residential buildings create a magnetic field with magnetic flux density of more than 10 μT in nearby residential premises, which is a danger to the health of the population and makes the study of this magnetic field relevant for the development of methods for its protection. The main source of the substations external magnetic field is their low-voltage current conductor, the contribution of which to the total level of the magnetic field is more than 90 %. Multi-dipole mathematical models, which have a clear physical interpretation, are a promising method of modeling the substations magnetic field, which is important for the further development of methods of population protection. The purpose of the work is to modify the well-known multi-dipole model for calculation based on it with a limited error of the external magnetic field of current conductors of built-in substations that are close to residential buildings at a distance of up to one meter. Methodology. A modified two-phase multi-dipole mathematical model of the main source of the external magnetic field of substation – its three-phase low-voltage current conductors – is proposed, which, unlike the existing model, is based on a two- you to halve the distance to the area of calculation without increasing the error. Verification. An experimental verification of the modified two-phase multi-dipole model of the magnetic field of a three-phase 100 kVA transformer substation on its full-scale physical model was carried out, and the results of the experiment were presented, confirming the coincidence of the calculation and the experiment with a spread of no more than 7 %.
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