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Analysis of the influence of ambient conditions on the ampacity of Kevlar-armoured subsea power cables

机译:分析环境条件对凯夫拉尔铠装海底电缆载流量的影响

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摘要

This paper presents the electro-thermal modelling and simulation, done on a standard Kevlar-armored subsea electrooptic cable based on the finite element analysis (FEA) approach, to determine the cable ampacity when operated in air, water and buried in the seabed under the relevant ambient environmental conditions. Compared to the ampacity in air at 30 ºC, the ampacities in air, water with no flow condition and seabed buried conditions with a thermal conductivity of 0.8 W/m-k could be 1.37 times, 1.57 times and 1.5 times, respectively, at an ambient temperature of 5 ºC; and the same could be 1.13 and 1.36 and 1.31 times, respectively, at 20 ºC. Under the influence of convective ambient flow fields, the ampacities could be increased only up to a maximum of 9% and 3%, with air and water flows of 20 m/s and 5 m/s, respectively. The results serve as a guideline for determining the cable ampacities for various environmental applications, based on the available cable current rating under specified ambient operating conditions.
机译:本文介绍了基于有限元分析(FEA)方法在标准凯夫拉尔铠装海底电光缆上进行的电热建模和仿真,以确定在空气,水和埋在海底下海床中时的电缆载流量。相关的周围环境条件。与30ºC的空气中的载流量相比,在环境温度下,空气,无流量条件下的水和导热系数为0.8 W / mk的海床掩埋条件下的载流量分别为1.37倍,1.57倍和1.5倍5摄氏度;在20ºC时分别为1.13、1.36和1.31倍。在对流环境流场的影响下,载流量最多只能增加9%和3%,空气和水的流量分别为20 m / s和5 m / s。根据指定的环境工作条件下可用的电缆额定电流,结果可作为确定各种环境应用的电缆载流量的指南。

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