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Computational modelling of heat transfer in a porcelain-housed surge arrester

机译:瓷制避雷器中传热的计算模型

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Surge arresters are equipment essential to the protection of the electric system against overvoltages. In an arrester, the housing temperature is a key factor to the assessment of its condition of operation. In this paper, a method to correlate the varistors temperature and the housing temperature of ceramic housing arresters is proposed. Models to evaluate the housing temperature from a given power input in the varistors are compared. Computational simulations based on the finite element method (FEM) were performed using a model of a 69 kV arrester with ceramic housing. The value of the housing's convective heat flux coefficient was estimated. The results obtained allow to quantify the heat transferred to the ambient by each mechanism and, thus, to define a model that is accurate and yet requires low computational effort.
机译:避雷器是保护电气系统免于过电压的必不可少的设备。在避雷器中,外壳温度是评估其运行状况的关键因素。本文提出了一种使压敏电阻温度与陶瓷外壳避雷器外壳温度相关的方法。比较了通过压敏电阻的给定功率输入评估外壳温度的模型。使用带有陶瓷外壳的69 kV避雷器模型,基于有限元方法(FEM)进行了计算仿真。估算了壳体的对流热通量系数的值。获得的结果可以量化每种机制传递到环境的热量,因此可以定义一个准确而又需​​要较少计算量的模型。

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