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Fast Numerical Computation of Current Distribution and AC Losses in Helically Wound Thin Tape Conductors: Single-Layer Coaxial Arrangement

机译:螺旋绕制薄带导体中电流分布和交流损耗的快速数值计算:单层同轴布置

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In this paper, we introduce a very fast method to compute the current distribution in helically wound thin conductors when one or many of them are arranged in a symmetrical manner to form a single-layer power cable. The method relies on two different approaches to find the magnetic vector potential due to helically wound current sheets. By invoking relevant symmetry arguments associated with the geometry of the problem and neglecting the thickness of the tape conductors, we show that this 3-D problem can be reduced to a computationally small 1-D problem whose domain lies along the half-width of any of the constituting conductor. As a consequence, the proposed method is very efficient in terms of computational time, and it is more accurate than many previous 2-D methods that cannot take into account the twist pitch. Since the nonlinear resistivity of the superconducting material can easily be treated with this method, it can be used to find current and field distributions, as well as ac losses in high-temperature superconductor coils and cables made of coated tapes. To verify the validity of the proposed method, we performed experimental measurements of ac losses in two configurations of solenoid-type cables made of a sample of YBCO-coated conductor tape. Excellent agreement was observed between the experimental data and the simulation results.
机译:在本文中,我们引入了一种非常快速的方法来计算螺旋缠绕的细导体中的一个或多个以对称方式排列以形成单层电力电缆时的电流分布。该方法依靠两种不同的方法来查找由于螺旋缠绕的电流片而产生的磁矢量电势。通过调用与问题的几何形状相关的相关对称性参数并忽略带状导体的厚度,我们证明了该3-D问题可以简化为一个计算上很小的1-D问题,其范围位于任何对象的半角组成导体的结果,所提出的方法在计算时间方面非常有效,并且比许多之前没有考虑扭曲间距的2-D方法更加准确。由于用这种方法可以轻松地处理超导材料的非线性电阻率,因此可用于查找电流和场分布,以及在高温超导体线圈和由涂层带制成的电缆中的交流损耗。为了验证所提出方法的有效性,我们在两种配置的电磁线圈电缆中进行了交流损耗的实验测量,这些电缆由YBCO涂层导体带样品制成。实验数据和模拟结果之间观察到极好的一致性。

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