防雷接地體性能改善及接地電阻分析計算
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Performance Improvement of LightningProtection Earthing Electrodes and Analysis and Computation of Earthing Resistance
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    摘要:

    結合雷電防護工作中的經驗和實例,分析防雷接地體的特性。結果表明:降低接地電阻,主要是通過降低接地體的接觸電阻和散流電阻;增加接地體所圍面積對接地電阻的減少有利;應充分考慮復合接地體形狀和接地網內屏蔽效應對接地電阻的影響;接地體周圍的土質、埋設深度和季節變化都影響土壤電阻率。接地極沿接地體網邊緣設置,網內接地極要稀疏布設,接地極的長度一般不相等,常用接地體埋設深度在1.5~3.5 m之間,北方地區在凍土層以下??刹捎眯阅芊€定的降阻劑和在接地體周圍更換土壤電阻率低的土質,要使接地電阻達到要求的同時減少成本。

    Abstract:

    On the basis of the experiences and examples from thunder and lightning protection practice, the characteristics of lightning protection earthing electrodes are analyzed. The results show that reducing earth resistance is mainly through reducing the contact resistance of earthing electrodes and dispersed resistances; increasing the encircled area of a earthing electrode is advantageous to the reduction of earthing resistance; the shapes of compound earthing electrodes and the influence of screening effect in the earthing grid on earth resistance should be fully considered; the soil resistivity is affected by the soil property around the earthing body, the burying depth of earthing electrodes,and seasonal variation. The earthing electrodes are arranged along the edges of the earthing grid, and the electrodes are distributed sparsely in the grid with different earthing electrode lengths. Generally, the burying depth of a commonused earth body is between 1.5 m and 3.5 m, below the frozen earth level in North China. The frictionreducing agents with stable performance and the soil with low soil resistivity can be used around earth bodies so to reduce costs while filling the requirement for earth resistance.

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楊永龍,錢莉,王生元.防雷接地體性能改善及接地電阻分析計算[J].氣象科技,2008,36(4):485~490

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  • 收稿日期:2007-08-20
  • 定稿日期:2007-12-26
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