DETERMINATION OF SOIL TROPHICITY WITH ELECTROPHYSICAL METHOD. MESSAGE 2. ELECTRODE DESIGN AND THE METHOD OF GEOMETRIC COEFFICIENT CALCULATION

G. Buzuk
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Abstract

The purpose of this work is to determine the influence of the electrodes surface isolation, as well as the method of geometric coefficient calculation, on the results of determining specific electrical resistance of soils (ER or SER). Metrological characteristics for SER measurement, as well as the influence of the electrodes immersion depth into the substrate studied on this indicator, were determined. Nonlinear nature of SER dependence on the electrodes immersion depth was established. For non-insulated electrodes the dependence was well approximated by the power function regardless of the method of calculating geometric coefficient of installation. In case of partially isolated (point) electrodes the use of geometric coefficient for calculating geometric coefficient with an adjustment to the electrodes immersion depth into the substrate studied makes it possible practically to get rid of SER dependence on the electrodes immersion depth. The technique can be used to assess the soils trophicity in places where medicinal plants grow.
电物理法测定土壤营养性。信息2。电极的设计及几何系数的计算方法
本工作的目的是确定电极表面隔离以及几何系数计算方法对土壤比电阻(ER或SER)测定结果的影响。确定了SER测量的计量特性,以及电极在衬底中的浸泡深度对该指标的影响。建立了电极浸渍深度对SER依赖的非线性性质。对于非绝缘电极,无论采用何种几何安装系数的计算方法,幂函数都能很好地近似地描述其相关性。在部分隔离(点)电极的情况下,使用几何系数来计算几何系数,并调整电极在衬底中的浸入深度,使实际摆脱电极浸入深度对SER的依赖成为可能。该技术可用于评估药用植物生长地区的土壤营养性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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