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The thermal inertia time constants and its influencing factors in the thermal dynamic process of overhead line and cable

机译:热动力动力学过程中热惯性时间常数及其影响因素

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Due to the existence of thermal capacity, the conductor temperature of overhead line and cable changes later than current steps (thermal inertia), and the thermal dynamic process of the conductor contains the huge current-carrying potential. As an important symbol of thermal dynamic process, the thermal inertia time constant is of great significance to describe the characteristics of thermal dynamic process accurately. In this paper, the thermal inertia time constants of overhead line and cable and its influencing factors are studied based on the heat balance models, which can be solved by the fourth order Runge-Kutta method. Then the four factors including the current step, ambient temperature, wind speed and global radiation intensity are used to explore their influence on the thermal inertia time constant of overhead line, and the current step and soil temperature on cable. The numerical results show the effects of influencing factors on the thermal inertia time constant and provide a theoretical basis for a more detailed evaluation of the thermal dynamic process.
机译:由于热容量的存在,架空线的导体温度和电缆之后的电流比电流步骤(热惯量)变化,并且导体的热动力学过程包含巨大的电流携带电位。作为热动态工艺的重要象征,热惯性时间常数是极大的重要性,可以准确地描述热动力学过程的特性。本文基于热平衡模型研究了架空线和电缆的热惯性时间常数及其影响因子,其可以通过第四阶跑架方法解决。然后,包括当前步骤,环境温度,风速和全局辐射强度的四个因素,用于探讨它们对桥接线的热惯性时间常数的影响,以及电缆上的电流步骤和土壤温度。数值结果显示了影响因素对热惯性时间常数的影响,为更详细的热动力过程评估提供了理论依据。

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