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Transient thermal modelling of short-circuit test for conductors by means of dimensional reduction

机译:通过尺寸缩减的导体短路测试的瞬态热建模

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This paper proposes a fast and accurate method to simulate the temperature rise due to a short-circuit condition in power conductors of aluminum based on one-dimensional reduction and the application of the finite difference method (FDM). The method suggested discretizes the analyzed conductor into several small one-dimensional nodes or elements. To improve accuracy and speed, the transient method proposed here applies a one-dimensional approach but analyzing in each node, the three-dimensional geometry of the conductor. By this way, and at each time-step, the convective coefficient and the incremental resistance of each node are determined and a further energy balance is calculated, thus obtaining realistic and accurate results. Results attained by means of the proposed method are validated against finite element method (FEM) simulations and experimental results conducted in a power laboratory, which corroborate the usefulness and accurate results of the proposed method.
机译:本文基于一维降阶和有限差分法(FDM)的应用,提出了一种快速准确的方法来模拟铝电导体短路条件下的温升。建议的方法将分析的导体离散为几个小的一维节点或元素。为了提高精度和速度,此处提出的瞬态方法采用一维方法,但在每个节点中分析导体的三维几何形状。这样,在每个时间步长,确定每个节点的对流系数和增量电阻,并计算出进一步的能量平衡,从而获得真实准确的结果。通过有限元方法(FEM)模拟和在电力实验室进行的实验结果验证了通过该方法获得的结果,证实了该方法的实用性和准确性。

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