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首页> 外文期刊>International journal of numerical modelling >Numerical calculation of AC substation grounding systems buried in a vertical multilayered earth model by higher-order basis function
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Numerical calculation of AC substation grounding systems buried in a vertical multilayered earth model by higher-order basis function

机译:用高阶基函数对埋在垂直多层土模型中的交流变电站接地系统进行数值计算

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To study the accuracy of numerical simulations for an AC substation grounding problem embedded in a vertical multilayered earth model, this paper proposes a novel algorithm combining the rapidly convergent one-dimensional Galerkin's BEM with higher-order basis functions on the basis of the quasi-static electric field theory. General analytical formulas for the mutual impedance between any pair of short line conductors are also derived to accelerate the numerical integration. These formulas can work in not only complex space but also real space because of our application of the quasi-static complex image method, which is different from the contribution of other earlier scientists, whose formula can work just in real space. The algorithm can be used to simulate and analyze any grounding system, including those incorporating a floating grid located anywhere in the earth model.
机译:为了研究嵌入在垂直多层地球模型中的交流变电站接地问题的数值模拟的准确性,本文提出了一种在准静态的基础上将快速收敛的一维Galerkin BEM与高阶基函数相结合的新算法。电场理论。还推导了任何一对短线导体之间的互阻抗的通用分析公式,以加快数值积分的速度。这些公式不仅可以在复杂空间中工作,而且可以在真实空间中工作,这是因为我们应用了准静态复杂图像方法,这与其他早期科学家的贡献不同,后者的公式只能在现实空间中工作。该算法可用于模拟和分析任何接地系统,包括那些包含位于地球模型中任何位置的浮动网格的接地系统。

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