The examination of the specific thermal resistivity and moisture of cable bed in laboratory conditions

N. Simić, Stefan Obradović
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引用次数: 0

Abstract

This paper at first hand briefly presents examples of the maximum permitted current changes for one cable depending on the specific thermal resistance soil value rz. It is emphasized that the permanently permissible current load of the cable should be calculated using a constant value rz in design - Then, for two cases from field, two samples were examined. The first sample is undisturbed soil from the cable route and the second sample is specially prepared cable bed. The corresponding rz values were obtained using the needle probe method in the laboratory. The difference is pointed out between the measured values of specific thermal resistivity and moisture of the samples. Some samples were being dried in thermal chambers and the others were being dried on ambient temperature. For drying in thermal chambers, based on experience for cross-linked polyethylene cables, the temperatures of 60°C to 90°C were selected for the first case while in the second case the temperature of 20°C over a long period of time was applied. The results obtained were analyzed and shown in appropriate tables and graphs. At the end of this paper the moisture of the soil was calculated for sampled cable bed that corresponds to the value of rz of 1(Km/W). The composition of the cable bed that allows the designed value of the rated power of the cable to be achieved is proposed.
实验室条件下电缆床的比热电阻率和含水率的检测
本文首先简要介绍了一根电缆根据比热阻土壤值rz的最大允许电流变化的例子。强调电缆的永久允许电流负载应在设计中使用恒定值rz来计算。然后,针对现场的两个案例,对两个样品进行了检查。第一个样品是电缆路线上的原状土,第二个样品是专门准备的电缆床。在实验室用针探针法得到相应的rz值。指出了试样比热电阻率与含水率测量值之间的差异。一些样品在热室中干燥,其他样品在环境温度下干燥。对于在热室中干燥,根据交联聚乙烯电缆的经验,第一种情况选择60°C至90°C的温度,而在第二种情况下,长时间使用20°C的温度。对所得结果进行分析,并以适当的表格和图表显示。本文最后计算了取样电缆床的土壤水分,对应rz值为1(Km/W)。提出了能使电缆的额定功率达到设计值的电缆床的组成。
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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4 weeks
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