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An on-board 2G HTS magnets system with cooling-power-free and persistent-current operation for ultrahigh speed superconducting maglevs

机译:板载2G HTS磁体系统具有无冷却功率和持续电流操作可用于超高速超导磁悬浮

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摘要

Introduction of superconductor to magnetic levitation (maglev) trains greatly enhances the performances compared to those of normal conductor maglevs, e.g. from 430 km/h of the Transrapid (in Shanghai) to 603 km/h of the L0 Series in Japan. However, one of the important constraints on development of superconducting maglevs is limited wireless feeding power for on-board superconducting magnets and cryogenic cooling. In this paper, a persistent-current superconducting magnets system with solid nitrogen (SN2) cooling preservation is proposed for liberation of its demanding on-board power feeding requirement. The magnets are optimally designed with no-insulation technique guaranteeing a safe operation with magnetic field over 0.8 T. Lasting time of persistent current (at 96.5% magnetic field retained) and SN2 cooling preservation (up to 40 K) is all >9 h, covering a maglev traveling distance of >5400 km at average designed speed of >600 km/h. The magnets have anti-vibration ability of 15 g (147 m/s2) up to 350 Hz, which has covered the vibratory motion range in maglevs. This work is intended to provide a reference for superconducting maglev developments.
机译:与普通导体磁悬浮列车相比,将超导体引入磁悬浮列车会大大提高性能。从Transrapid(上海)的430 km / h到日本L0系列的603 km / h。然而,对超导磁悬浮的发展的重要限制之一是用于板载超导磁体的无线馈电和低温冷却受到限制。为了缓解其对车载供电的苛刻要求,提出了一种具有固态氮(SN2)冷却保存功能的恒流超导磁体系统。磁体采用无绝缘技术进行了优化设计,可确保在超过0.8 T的磁场下安全运行。持续电流(保持96.5%的磁场)和SN2冷却保存(最高40 K)的持续时间都> 9 h,在平均设计速度> 600 km / h的情况下,其磁悬浮行进距离> 5400 km。磁体具有高达350 Hz的15 g(147 m / s 2 )的抗振能力,已经覆盖了磁悬浮的振动范围。这项工作旨在为超导磁悬浮的发展提供参考。

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