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首页> 外文期刊>IEEE Transactions on Applied Superconductivity >Development of a superconducting magnet excited with thermoelectric conversion element for quasi persistent mode
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Development of a superconducting magnet excited with thermoelectric conversion element for quasi persistent mode

机译:准持久模式用热电转换元件激励的超导磁体的开发

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摘要

Some superconducting magnets are generally operated in persistent mode. The persistent-mode operation of these magnets is necessary to maintain field decay rates below a certain level, typically 0.01 ppm over a 1-hr period. These magnets used to be physically uncoupled from the external power source. In the case of HTS magnets, it is very difficult to keep the magnetic field stable without a high-stability external power source for large flux flow losses. A superconducting magnet is a high current and low voltage system except for excitation voltage. From this point of view, a thermoelectric conversion element is a very suitable power supply for a quasi persistent-mode magnet system. Moreover, this element seems to be particularly useful for HTS magnets. As the first step of this study, the authors tried to design a superconducting magnet excited with a thermoelectric conversion element and carried out an excitation test of a small HTS magnet by using the elements.
机译:一些超导磁体通常以持久模式运行。这些磁体的持续模式操作对于将磁场衰减率保持在一定水平以下(通常在1小时内为0.01 ppm)以下非常必要。这些磁铁以前从物理上与外部电源断开。对于HTS磁体,如果没有高稳定性的外部电源来保持较大的磁通流量损失,则很难保持磁场稳定。除励磁电压外,超导磁体是高电流低压系统。从这一观点出发,热电转换元件是用于准持久模式磁体系统的非常合适的电源。此外,该元素似乎对高温超导磁体特别有用。作为这项研究的第一步,作者试图设计一种用热电转换元件激励的超导磁体,并通过使用这些元件对小型HTS磁体进行了激励测试。

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