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首页> 外文期刊>Power Engineering Review, IEEE >Emergency Ampacities of Direct Buried Three Phase Underground Cable Systems
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Emergency Ampacities of Direct Buried Three Phase Underground Cable Systems

机译:直埋式三相地下电缆系统的紧急通行能力

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摘要

A thermal model is formulated for the determination of the emergency transient ampacities of a three phase, horizontally spaced underground cable system. The model is based on a finite difference heat transfer analysis and the principle of superposition which permits the summation of the temperature rise of individual heat sources to eventually provide for the temperature rise of a multiple cable system. The thermal model is transformed into a complex computer program that is capable of calculating the realtime cable temperature for any change in conductor current The program is used to calculate the response of conductor temperatures caused by both ramp and step changes in currents for four conductor sizes between 4/0 and 1500 kc mil. The amount of time to reach conductor temperatures of 100??C and 120??C from a steady conductor temperature of 75??C is calculated forthe different conductor sizes and for different emergency current levels. The results show that underground cable systems possess significant thermal inertia and that larger cable sizes can operate long periods of time under emergency conditions before reaching temperatures that will damage cable insulation materials. For the cable system considered, an emergency transient, which doubles the 75??C ampacity, produces a conductor temperature of 100??C within 4 mm for a 4/0 cable and within 17 min for a 1500 kc mil cable. The emergency ampacity curves can be used by a cable engineer to determine how long a given emergency can remain on the system before the conductor reaches a predetermined temperature.
机译:建立了一个热模型来确定三相水平间隔地下电缆系统的紧急暂态载流量。该模型基于有限差分传热分析和叠加原理,该原理允许对各个热源的温度上升进行求和,最终为多电缆系统提供温度上升。将热模型转换成复杂的计算机程序,该程序能够针对导体电流的任何变化计算实时电缆温度。该程序用于计算在以下两种导体尺寸之间电流的斜率和阶跃变化引起的导体温度响应4/0和1500 kc mil。对于不同的导体尺寸和不同的紧急电流水平,要计算出从稳定的导体温度75?C达到导体温度100?C和120?C的时间量。结果表明,地下电缆系统具有显着的热惯性,并且较大尺寸的电缆可以在紧急情况下长时间运行,直到达到会损坏电缆绝缘材料的温度为止。对于所考虑的电缆系统,紧急瞬变使75?C的载流量翻倍,对于4/0电缆在4 mm内产生导体温度为100?C,对于1500 kc mil电缆在17分钟内产生导体温度为100°C。电缆工程师可以使用紧急载流量曲线来确定给定紧急情况可以在导体达到预定温度之前在系统上保留的时间。

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