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Mechanism of notable difference in the field delay times of no-insulation layer-wound and pancake-wound REBCO coils

机译:无绝缘层绕和薄饼绕制REBCO线圈的场延迟时间显着差异的机理

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The characteristic magnetic field delay time for a no-insulation (NI) REBCO layer-wound coil is three orders of magnitude longer than that for a NI REBCO double-pancake coil. In a NI layer-wound coil, the circumferential current firstly flows along the periphery of the coil winding, and then it diffuses from the top and bottom turns into the middle turns of the winding, resulting in a long characteristic magnetic field delay time due to the current diffusion process. In contrast, the characteristic magnetic field delay time for a NI double-pancake coil is dominated by the circumferential current decay in individual turns. On the basis of a derived scaling law, the characteristic magnetic field delay time for a NI REBCO layer-wound coil for a 400 MHz LTS/REBCO nuclear magnetic resonance (NMR) magnet is 37 h, while that for a NI REBCO double-pancake coil is only < 1min. Thus, it is demonstrated that a double-pancake-winding is greatly preferred to a layer-winding for NMR applications from the view point of the characteristic magnetic field delay time.
机译:无绝缘(NI)REBCO层绕线圈的特征磁场延迟时间比NI REBCO双薄层线圈的特征磁场延迟时间长三个数量级。在NI层绕线圈中,周向电流首先沿线圈绕组的外围流动,然后从上匝和下匝扩散到绕组的中匝,从而导致较长的特征磁场延迟时间当前的扩散过程。相比之下,NI双薄板线圈的特征性磁场延迟时间由单个匝数中的周向电流衰减决定。根据导出的比例定律,对于400 MHz LTS / REBCO核磁共振(NMR)磁体,NI REBCO层绕线圈的特征磁场延迟时间为37 h,而对于NI REBCO双薄饼则为线圈仅<1分钟。因此,证明了从特性磁场延迟时间的观点来看,对于NMR应用而言,双叠层绕组比层绕组更优选。

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