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Dependence of spatial distribution of shielding current density inHTS plate on applied magnetic field profile

机译:HTS板中屏蔽电流密度的空间分布与所施加磁场的关系

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摘要

The spatial distribution of the shielding current density in the high-Tc superconducting (HTS) plate is investigated numerically. The multiple-thin-layer structure is assumed to modelize the IPTS plate and the flux-flow and flux-creep model is adopted to describe mixed states of the HTS plate. Under these assumptions, the shielding current density flowing in the HTS plate is governed by the integro-differential equations of the scalar potential. By applying the FEM to the spatial discretization of the equations, a nonlinear system of first-order ordinary differential equations is obtained. In order to solve the nonlinear system, the high performance numerical method is employed. A numerical code to integrate the equation has been developed and, by use of the code, the time evolution of the shielding current density is investigated. The results of computations show that the shielding current density becomes more peaked near the edge of the plate with an increase in the frequency of the applied magnetic field. Moreover, it is found that, in the high-frequency region, the phase difference between the applied and the generated magnetic fields approaches to π with an increase in the applied magnetic field
机译:数值研究了高Tc超导(HTS)板中屏蔽电流密度的空间分布。假设采用多层结构对IPTS板进行建模,并采用通量和通量-蠕变模型描述HTS板的混合状态。在这些假设下,在HTS板上流动的屏蔽电流密度由标量电势的积分微分方程控制。通过将有限元方法应用于方程的空间离散化,可以获得一阶常微分方程的非线性系统。为了解决非线性系统,采用了高性能数值方法。已经开发出用于积分方程的数字代码,并且通过使用该代码,研究了屏蔽电流密度的时间演变。计算结果表明,随着所施加磁场频率的增加,屏蔽电流密度在板的边缘附近变得更加峰值。此外,发现在高频区域中,随着施加磁场的增加,施加磁场与产生磁场之间的相位差接近π。

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