金玉琪, 史兴华, 朱洪亮, 周昱甬, 鲁德强, 方晓, 许正平. 杭州地区环境工频电磁场现状分析[J]. 环境与职业医学, 2010, 27(10): 597-601.
引用本文: 金玉琪, 史兴华, 朱洪亮, 周昱甬, 鲁德强, 方晓, 许正平. 杭州地区环境工频电磁场现状分析[J]. 环境与职业医学, 2010, 27(10): 597-601.
JIN Yu-qi , SHI Xing-hua , ZHU Hong-liang , ZHOU Yu-yong , LU De-qiang , FANG Xiao , XU Zheng-ping . Current Status of Environmental Power Frequency Electromagnetic Fields in Hangzhou Metropolitan Area[J]. Journal of Environmental and Occupational Medicine, 2010, 27(10): 597-601.
Citation: JIN Yu-qi , SHI Xing-hua , ZHU Hong-liang , ZHOU Yu-yong , LU De-qiang , FANG Xiao , XU Zheng-ping . Current Status of Environmental Power Frequency Electromagnetic Fields in Hangzhou Metropolitan Area[J]. Journal of Environmental and Occupational Medicine, 2010, 27(10): 597-601.

杭州地区环境工频电磁场现状分析

Current Status of Environmental Power Frequency Electromagnetic Fields in Hangzhou Metropolitan Area

  • 摘要: 目的 评价杭州地区环境工频电磁场强度。

    方法 采用德国Narda公司制造的EFA-300电磁场分析仪,在无雨雪天气,对杭州地区的典型电磁环境进行现场测试,并按照现行的电磁环境评价标准对测试结果进行分析。

    结果 杭州市四大城市广场环境工频电场在3.30~3.52 V/m之间,均值为3.42 V/m;环境工频磁场在0.022~1.094 μT之间,均值为0.13 μT。10 kV小型变电站工频电场强度均值为0.078 V/m,磁感应强度均值为0.325 μT。110 kV变电站的工频电场强度为3.33~11.56 V/m,磁感应强度为0.028~9.650 μT。220 kV变电站的工频电场强度3.37~546.2 V/m,磁感应强度为0.027~1.969 μT。500 kV变电站内部的电场强度为16~5 805 V/m,磁感应强度为0.379~22.040 μT。所测两条220 kV线路的最大电场强度在线下中央投影点,分别为322.66 V/m和880 V/m,然后随距离的增加快速衰减;对单组架空线而言,其磁感应强度在0.2 μT左右,当三组架空线在一起时,情况稍显复杂,但线下最大处也只有1.081 μT。

    结论 杭州地区居民活动可及区域中的环境工频电磁场暴露场强不仅符合国内外有关标准、导则和技术规范的要求,而且处于很低水平。

     

    Abstract: Objective To evaluate the current environmental power frequency electromagnetic fields(EMF)intensity in Hangzhou Metropolitan Area.

    Methods An electromagnetic field analyzer EFA-300 from Narda company, Germany was employed to measure the power frequency EMF intensities of typical environmental places under weather condition without raining and snowing, and analyze the data according to the current EMF environment evaluation criteria.

    Results The environmental power frequency electric fields(EF)at the four city squares ranged from 3.30 to 3.52 V/m with a mean value of 3.42 V/m, and the power frequency magnetic fields(MF)ranged from 0.022 to 1.094 μT with a mean value of 0.13 μT. As for the transformer substations, 10 kV ones had a mean EF intensity of 0.078 V/m and MF intensity of 0.325 μT; the EF and MF intensities for 110 kV ones ranged from 3.33 to 11.56 V/m and from 0.028 to 9.650 μT; whereas 3.37-546.2 V/m and 0.027-1.969 μT for 220 kV ones, and 16-5805V/m and 0.379-22.040μT for 500kV ones, respectively. The highest EF intensity of two 220kV power lines were 322.66V/m and 880 V/m at the central projection points just under the lines, and the EF intensities decreased quickly as the distances increased. As for the single overhead line, the MF intensity was around 0.2 μT, but the condition got little complicated while three overhead lines combined together with the highest MF of 1.081 μT.

    Conclusion The environmental power frequency EMF intensity in Hangzhou Metropolitan Area not only meets the requirements of domestic and international standards, guidelines and technical specifications, but also stays at very low level.

     

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