管式电极水平接地的尺寸要求

V. Maier, S. Pavel, Horia G. Beleiu, Daniela F. Niste, C. Darab
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引用次数: 1

摘要

从应用诸如最小占地面积、导电材料消耗或投资成本等最佳标准的角度来探讨接地(EGR)的尺寸。对土壤电阻率作为EGR分散电阻的定义量进行分析,确定其值的变化范围,并估计设计中采用的最大值。将计算关系按其使用顺序进行分组,从而构成所研究应用的完整物理模型。已知的有限指示的HEG利用系数是通过提出一个线性关系的计算这个数量作为一个函数的电极长度和相邻平行电极之间的平面内距离补偿。由于HEG的非线性物理模型,有必要开发一种连续识别计算尺寸的算法,这是确定三元电极长度-电极数-电极间距的基础。电极间互连导体的色散电阻是确定HEG总色散电阻的重要参数,其计算包含在EGR的物理模型中。利用HEG的完整物理模型,在将EGR的分散阻力置于允许范围内的强制性条件下,进行了一系列的尺寸运行,以突出在为HEG特定数量设置最终值时应用最优性标准的可能性。以最小占地面积或金属材料质量为代表的两个最佳标准在一系列具体数据上进行了测试,以确定未来研究的兴趣领域。
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Dimensioning Aspects of Horizontal Earth Grounding, With Pipe Type Electrodes
The sizing of earth grounding (EGR) is approached in the perspective of applying optimal criteria such as minimum footprint, conductive material consumption or investment costs. The soil resistivity, as a defining quantity for the dispersion resistance of the EGR, is analyzed to decide on the range of variation of its values and to estimate the maximum value, to be adopted in the design. The calculation relations are grouped in the sequence of their use, thus composing the complete physical model of the studied application. The known limited indications of the HEG utilization coefficient are compensated by proposing a linear relation for the calculation of this quantity as a function of the electrode length and the in-plane distance between neighboring parallel electrodes. Due to the non-linear physical model of HEG, it was necessary to develop an algorithm for the successive identification of the computational sizes, which is the basis for the determination of the triad electrode length-electrode number-distance between electrodes. The values of the dispersion resistance of the interconnecting conductor between the electrodes being important for the determination of the total dispersion resistance of the HEG, its calculation was included in the physical model of the EGR. Using the complete physical model of the HEG, a series of sizing runs are made to highlight the possibilities of applying the optimality criteria in setting the final values for the HEG specific quantities, under the mandatory condition of bringing the dispersion resistance of the EGR within the allowed range. Two of the optimal criteria represented by the minimum footprint area or mass of metallic materials were tested on a series of concrete data in order to determine areas of interest for future studies.
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