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Measurement of earth-electrode resistance with particular reference to earth-electrode systems covering a large area

机译:接地电极电阻的测量,特别是涉及覆盖大面积的接地电极系统

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摘要

The method of measuring an earth-electrode resistance has been known for a number of years, but there are some aspects of the measurement which are not fully understood. In particular, there are difficulties which arise when the earth-electrode system is of large physical dimensions, e.g. that of a substation or power station. The simple method which is normally used cannot be applied directly for several reasons. It becomes very difficult to get outside the potential-gradient area of the system, owing to the great distance that it may extend. The auxiliary electrodes used must be placed as far away from the system as is practicable, and this involves the use of long leads, which may possess considerable self and mutual impedance. Again, with these large distances, the stray potential difference in the earth due, say, to leakage from the supply may be considerable, and the measuring equipment used must be capable of dealing with this. After an analysis of the basic factors involved, the paper describes a method of determining the resistance of a large electrode system and apparatus suitable for making the measurement.
机译:测量接地电极电阻的方法已经知道了很多年,但是有些测量方面还没有完全理解。特别地,当接地电极系统具有较大的物理尺寸时,例如当接地电极系统具有较大的困难时,会出现困难。变电站或电站的。由于多种原因,不能直接应用通常使用的简单方法。由于它可能会延伸很远的距离,因此很难脱离系统的电势梯度区域。所使用的辅助电极必须放置在距离系统尽可能远的地方,这涉及使用长导线,这可能具有相当大的自阻抗和互阻抗。同样,在这么大的距离下,例如由于电源泄漏导致的地球上的杂散电势差可能会很大,并且所使用的测量设备必须能够处理这种情况。在分析了涉及的基本因素之后,本文介绍了一种确定适合进行测量的大型电极系统和设备的电阻的方法。

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