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SIMULATION MODEL ESTABLISHMENT METHOD FOR HIGH-TEMPERATURE SUPERCONDUCTING CORC

机译:高温超导CORC的仿真模型建立方法

摘要

A simulation model establishment method for a high-temperature superconducting CORC, the method comprising the following steps: step one, according to the three-dimensional structure of an actual superconducting CORC, and disregarding the width of the superconducting band, establishing a three-dimensional electromagnetic simulation model of the superconducting CORC and solving same (S10); step two, according to the cross-sectional structure of the superconducting CORC, establishing a two-dimensional electromagnetic simulation model of the superconducting CORC (S11); and step three, extracting, from the three-dimensional electromagnetic simulation model, the distribution of current density vectors along the width of the superconducting band, and using same as excitation for the two-dimensional electromagnetic simulation model to solve the distribution of the current density vectors along the width of the superconducting band, so as to obtain the influence of the three-dimensional structure of the superconducting CORC on electromagnetic characteristics thereof (S12). The method has the advantages of data obtained by means of calculation being accurate, a small calculation amount, etc.
机译:一种高温超导CORC的仿真模型建立方法,该方法包括以下步骤:步骤一,根据实际的超导CORC的三维结构,忽略超导带的宽度,建立三维超导CORC的电磁仿真模型并求解(S10);第二步,根据超导CORC的截面结构,建立超导CORC的二维电磁仿真模型(S11)。第三步,从三维电磁仿真模型中提取出沿超导带宽度方向的电流密度矢量分布,并对二维​​电磁仿真模型使用相同的激励作为激励来求解电流密度的分布。沿超导带的宽度矢量,以获得超导CORC的三维结构对其电磁特性的影响(S12)。该方法的优点是通过计算获得的数据准确,计算量小等。

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