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Heat conduction in the cable insulation of force-cooled underground electrical power transmission systems

机译:强制冷却地下电力传输系统电缆绝缘中的热传导

摘要

Forced-cooled systems for oil-filled pipe-type cable circuits have recently been considered. In such systems the conduction resistance through the paper insulation of the cables is the limiting thermal resistance. Assuming bilateral symmetry, steady-state conditions, and two-dimensional heat transfer, a FORTRAN IV computer program was written to solve the heat conduction problem in the cable insulation for arbitrary configurations of a three-cable system. For a steel pipe, a cable system is most susceptible to overheating in the equilateral configuration with the three cables touching. Proximity effects are very significant in forced cooling, especially when cables are not provided with a copper tape under the insulation moisture seal assembly, accounting for as much as 21% of the total oil temperature rise between refrigeration stations. This figure, however, is reduced to 8% when 0.005 inch thick copper tape is present.
机译:最近已经考虑了用于油浸式管道电缆线路的强制冷却系统。在这样的系统中,通过电缆纸绝缘的传导电阻是极限热阻。假设双向对称,稳态条件和二维热传递,编写了FORTRAN IV计算机程序来解决三电缆系统任意配置的电缆绝缘中的导热问题。对于钢管,在三根电缆接触的情况下,电缆系统在等边配置中最容易过热。在强制冷却中,邻近效应非常显着,尤其是在绝缘防潮密封组件下方未在铜带上提供电缆的情况下,这种现象占制冷站之间总油温上升的21%。但是,当存在0.005英寸厚的铜带时,该数字降低到8%。

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