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首页> 外文期刊>Journal of Modern Power Systems and Clean Energy >Calculating current and temperature fields of HVDC grounding electrodes
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Calculating current and temperature fields of HVDC grounding electrodes

机译:计算HVDC接地电极的电流和温度场

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Current field calculation based on the resistance network method (RNM) and temperature field calculation based on the finite volume method (FVM) can be used to evaluate the performance of high-voltage direct-current (HVDC) grounding electrodes. The main idea of the two methods is to transform an electric and temperature field problems to equivalent circuit problems by dividing the 3D soil space near the grounding electrode into a suitable number of contiguous and non-overlapped cells. Each cell is represented as a central node connecting to the adjacent cells. The resistance network formed by connecting all the adjacent cells together can be solved to calculate the current field. Under the same conditions, the results calculated by the RNM are consistent with the result by CDEGS, a widely used software package for current distribution and electromagnetic field calculation. Based on the finite volume method, the temperature field results are also calculated using time domain simulation.
机译:基于电阻网络法(RNM)的电流场计算和基于有限体积法(FVM)的温度场计算可用于评估高压直流(HVDC)接地电极的性能。两种方法的主要思想是通过将接地电极附近的3D土壤空间划分为适当数量的连续和不重叠的单元,将电场和温度场问题转换为等效电路问题。每个单元表示为连接到相邻单元的中心节点。可以解决通过将所有相邻单元连接在一起而形成的电阻网络,以计算电流场。在相同条件下,RNM的计算结果与CDEGS的计算结果一致,CDEGS是一种广泛使用的用于电流分布和电磁场计算的软件包。基于有限体积法,还使用时域仿真来计算温度场结果。

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