雷電防護(hù)深井法降阻效果分析
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湖州市氣象局“地網(wǎng)接地電阻測(cè)量技術(shù)研究”課題資助


Effect Analysis of Resistance Reduction Using DeepWell Method
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    摘要:

    通過對(duì)鋼管作垂直接地極接地電阻的理論計(jì)算和工程實(shí)踐,分析了深井法降阻與土壤電阻率、接地極深度及接地極直徑的關(guān)系。研究表明:深度越深,降阻效果越差;土壤電阻率越大,降阻效果越好;直徑越大,降阻效果越差。從接地極電流密度、接地極放電的端部效應(yīng)等因子的影響對(duì)深井法降阻效果的特點(diǎn)進(jìn)行了定性的解釋。同時(shí)考慮到雷電流的大地趨膚效應(yīng),從建設(shè)成本考慮,提出不宜在土壤電阻率較低的地區(qū)推廣深井法,且接地極直徑達(dá)到一定大小后,再增加直徑的降阻效果已不明顯,性價(jià)比不高,故接地極的直徑也不宜太大。

    Abstract:

    Based on theoretical calculations and engineering practice for the grounding resistance of the vertical grounding electrode using a steel pipe, an analysis is made of the relationship between the effect of the resistance reduction using the deep well method and soil resistivity, as well as the depth and diameter of the ground electrode. Its characteristics include: the deeper the depth, the worse the effect of reduced resistance; the bigger the soil resistivity, the better the effect of resistance reduction; the bigger the diameter, the worse the effect of reduced resistance. The characteristics of the effect of the resistance reduction using the deep well method are explained qualitatively from the influence of the grounding electrode current density and discharge end effect. Simultaneously, considering the earth skin effect of lightning current and the construction cost, it is concluded that the deep well method is not recommended in the areas with lower soil resistivity; after the grounding electrode diameter size reached a certain size, increasing the diameter of the grounding electrode will have little effect in the resistance reduction, so the diameter of the grounding electrode should not be too big.

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馬金福,朱衛(wèi)星,馮志偉,陳志良.雷電防護(hù)深井法降阻效果分析[J].氣象科技,2009,37(6):767~770

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  • 收稿日期:2009-02-24
  • 定稿日期:2009-04-13
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