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A Field-Shaking System to Reduce the Screening Current-Induced Field in the 800-MHz HTS Insert of the MIT 1.3-GHz LTS/HTS NMR Magnet: A Small-Model Study

机译:减少MIT 1.3 GHz LTS / HTS NMR磁体的800 MHz HTS插入物中的屏蔽电流感应场的场振动系统:小模型研究

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摘要

In this paper, we present experimental results, of a small-model study, from which we plan to develop and apply a full-scale field-shaking system to reduce the screening current-induced field (SCF) in the 800-MHz HTS Insert (H800) of the MIT 1.3-GHz LTS/HTS NMR magnet (1.3G) currently under construction—the H800 is composed of 3 nested coils, each a stack of no-insulation (NI) REBCO double-pancakes. In 1.3G, H800 is the chief source of a large error field generated by its own SCF. To study the effectiveness of the field-shaking technique, we used two NI REBCO double-pancakes, one from Coil 2 (HCoil2) and one from Coil 3 (HCoil3) of the 3 H800 coils, and placed them in the bore of a 5-T/300-mm room-temperature bore low-temperature superconducting (LTS) background magnet. The background magnet is used not only to induce the SCF in the double-pancakes but also to reduce it by the field-shaking technique. For each run, we induced the SCF in the double-pancakes at an axial location where the external radial field Br > 0, then for the field-shaking, moved them to another location where the external axial field Bz ≫ BR. Due to the geometry of H800 and L500, top double-pancakes of 3 H800 coils will experience the considerable radial magnetic field perpendicular to the REBCO tape surface. To examine the effect of the field-shaking on the SCF, we tested each NI REBCO DP in the absence or presence of a radial field. In this paper, we report 77-K experimental results and analysis of the effect and a few significant remarks of the field-shaking.
机译:在本文中,我们提供了一个小模型研究的实验结果,我们计划从中开发并应用一个完整的场振动系统,以减少800 MHz HTS插入物中的屏蔽电流感应场(SCF)。 (H800)目前正在建造中的MIT 1.3 GHz LTS / HTS NMR磁体(1.3G)– H800由3个嵌套线圈组成,每个嵌套线圈都是无绝缘(NI)REBCO双层煎饼。在1.3G中,H800是其自己的SCF生成的大错误字段的主要来源。为了研究现场振动技术的有效性,我们使用了3个H800线圈中的两个NI REBCO双煎饼,一个来自线圈2(HCoil2),另一个来自线圈3(HCoil3),并将它们放在5个孔中-T / 300毫米室温孔低温超导(LTS)背景磁铁。背景磁铁不仅用于在双层薄煎饼中诱发SCF,而且还通过场振动技术将其降低。对于每次运行,我们在双层薄饼的轴向位置(外部径向磁场Br> 0)上诱导了SCF,然后为了进行磁场振荡,将其移动到外部轴向磁场Bz≫ BR的另一个位置。由于H800和L500的几何形状,三个H800线圈的顶部双层薄饼将承受垂直于REBCO胶带表面的相当大的径向磁场。为了检查振动对SCF的影响,我们在不存在或存在径向场的情况下测试了每个NI REBCO DP。在本文中,我们报告了77-K的实验结果,并对其效果进行了分析,并提出了一些有关震荡的重要说明。

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