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Numerical Model of the External Thermal Resistance of Underground Cables Buried in the Multi–layers Soil for Ampacity Calculation

机译:计算载流量的多层土壤中地下电缆外部热阻的数值模型

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This paper presents the application of the Adaptive Higher–Order Finite Element up to 9th – order for simulating the thermal field of underground cables system buried in the multi–layers soil in steady state. The aim of this task is to improve the estimation of the thermal resistance surrounding ducts of cables that is one of steps in ampacity calculation procedures. To demonstrate the high accuracy of this approach, it is firstly applied to solve a 2D heat benchmark problem with errors evaluation. Afterward, the proposed method is also tested on a real model of 110 kV high voltage cables line in Ho Chi Minh city, Vietnam. Moreover, the wrong formulas for modeling the heat convection boundary of the underground cables using the classical finite element analysis in some published papers have been corrected to help the readers can understand the solving problem more clearly in physical aspect.
机译:本文介绍了高达9的自适应高阶有限元的应用 –为了模拟稳定状态下埋在多层土壤中的地下电缆系统的热场。这项任务的目的是改善对电缆导管周围热阻的估计,这是载流量计算程序中的步骤之一。为了证明这种方法的高精度,首先将其用于解决带有误差评估的二维热基准测试问题。此后,还对越南胡志明市的110 kV高压电缆线路的真实模型进行了测试。此外,在一些已发表的论文中,使用经典的有限元分析法对地下电缆的热对流边界进行建模的错误公式已得到纠正,以帮助读者从物理方面更清楚地了解解决问题的方法。

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