Electrical resistivity measurement and conductive model of Dagang soil
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摘要: 利用直流四電極法測量了不同含水量條件下的大港土電阻率,其電阻率隨含水量增加而降低.在測量中發現當外加電位梯度比較小時,所計算的電阻率ρ值相對較大;隨著外加電位梯度增加,其電阻率逐漸減小,并最終趨于一個穩定的數值,特別是在含水量比較低的情況下,這種變化更為明顯.提出了一個土壤導電模型,利用等效電路的方法對土壤的導電性進行了討論:在含水量較低時,主要是孔隙水液相和固/液界面上的交換性離子導電;在高含水量條件下,土壤主要是通過孔隙水液相導電,固/液界面上的交換性離子導電可以忽略不計.Abstract: The electrical resistivity of Dagang soil at different water content levels was measured by the means of DC four-electrode technology. The resistivity is lower at a higher water content level. During the measurement, the calculated value of resistivity is bigger at lower voltage grads; when the voltage grads increasing, it reduces and tends to a steady value, especially for low water content soil. A conductive model was presented, and soil conductivity was discussed by an equivalent circuit. At a lower water content level, the pathway of current flow is liquid phase pathway of pore water and solid-liquid phase pathway primarily via exchangeable ions. At higher water content the current passes mostly through pore water and the effect of exchangeable ions at the interface of solid-liquid phase can be ignored.
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Key words:
- Dagang soil /
- electrical resistivity /
- water content /
- voltage grads
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