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Study on Temperature Field Modeling and Operation Optimization of Soil Buried Double-circuit Cables

机译:土壤埋藏双电缆温度场建模与运行优化研究

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Cable conductor temperature is the key condition to determine whether current in operation reaches to cable's ampacity. In order to optimize cable operation, it is important to calculate cable conductor temperature with high accuracy. A simple and quick method of calculating temperature field for double-circuit underground cables is introduced in this paper. The superpose principle is applied to establish a calculation model of conductor temperature, and the conductor temperature is divided into three parts: initial temperature decided by environment temperature, temperature rise caused by its loss, and conductor temperature rise generated by other cable heat sources. Theoretical calculating models are established by combinating analytical method and the finite element method, then the formula of conductor temperature is deduced. On this basis, double-circuit soil buried cables' ampacity is calculated and optimized. Finally, the validity of conductor temperature field model and calculation formula proposed in this paper is verified by calculation examples.
机译:电缆导体温度是确定操作中的电流是否达到电缆的空间的关键条件。为了优化电缆操作,重要的是以高精度计算电缆导体温度。本文介绍了一种简单且快速的计算双电路地下电缆温度场的方法。叠加原理应用于建立导体温度的计算模型,并将导体温度分为三个部分:初始温度由环境温度决定,温度升高引起的损失,导体温度升高由其他电缆热源产生。通过组合分析方法和有限元方法建立理论计算模型,然后推导了导体温度的公式。在此基础上,计算和优化双电路土壤埋地电缆的粘度。最后,通过计算实施例验证了本文中提出的导体温度场模型和计算公式的有效性。

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