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Analysis of Current Carrying Capacity and Temperature Field of Power Cables under Different Laying Modes

机译:不同铺设模式下电力电缆电流承载能力和温度场分析

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With the continuous increase of electric power load, the capacity and peak overload can no longer meet the demand of power supply well. The current carrying capacity of the cable should be increased as much as possible to solve the above problems. The current carrying capacity of power cables is difficult to determine because it is affected by many factors such as the laying method, operating conditions, and surrounding environment. Therefore, accurately calculating the current carrying capacity of power cables under complex conditions has great significance for ensuring the cables' safety and economy. Power cables are the main medium for urban power transmission. Accurately calculating the current carrying capacity and planning the laying method of power cables are of great significance for reliable power supply. Because cables are always laid by complicated methods and harsh environments, which mean that various factors can affect the ampacity and temperature field distribution, it is difficult to entirely rely on the current IEC standard for calculations. Based both on the IEC standard and heat transfer principles, this paper establishes models for buried cables in different soils and laying methods. The finite element algorithm is used to analyze the current carrying capacity and temperature field distribution of power cables.
机译:随着电力负荷的连续增加,容量和峰值过载不能再满足电源的需求。电缆的电流承载能力应尽可能多地增加,以解决上述问题。电力电缆的电流承载能力难以确定,因为它受到许多因素的影响,例如铺设方法,操作条件和周围环境。因此,准确地计算复杂条件下电力电缆的电流承载能力对确保电缆的安全性和经济性具有重要意义。电力电缆是城市电力传输的主要介质。精确计算电流承载能力和规划电缆的铺设方法对于可靠的电源具有重要意义。因为电缆始终由复杂的方法和恶劣环境铺设,这意味着各种因素会影响节余性和温度场分布,很难完全依赖于当前的IEC计算标准。基于IEC标准和传热原理,本文建立了不同土壤和铺设方法的埋地电缆模型。有限元算法用于分析电力电缆的电流承载能力和温度场分布。

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