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首页> 外文期刊>Journal of Superconductivity and Novel Magnetism >Levitation Performance of Bulk High Temperature Superconductor Above the Permanent Magnet Guideway at Different Temperatures
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Levitation Performance of Bulk High Temperature Superconductor Above the Permanent Magnet Guideway at Different Temperatures

机译:永磁导轨上方高温下大块高温超导体的悬浮性能

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The levitation performance of a high temperature superconducting (HTS) Maglev system was investigated at different temperatures for HTS Maglev vehicle application. Using a cryogenic measurement system, we studied the effects of the HTS's temperatures and the HTS's field-cooling heights (FCHs) on the levitation force and its force density by applying a two-pole Halbach array's permanent magnet guideway (PMG) at different temperatures. Results show that the levitation force is not only dependent on the temperature but also dependent on the original FCH. The effect of the temperature on the levitation force is considerably minute in low FCH. However, it was confirmed that the levitation force of HTS is larger at a lower temperature than at a higher temperature in high FCHs. Moreover, by applying the temperature of 60 K, the levitation force density of the system can be increased by 65% and 57.3% compared to the force density at 77 K in 35 mm and 40 mm FCHs. Hence, more magnetic energy at a low temperature area and high FCH can be utilized. The advancement of Maglev system's performance will directly promote the development of HTS Maglev application and is helpful for the further HTS Maglev vehicle.
机译:对于高温超导磁悬浮车辆应用,研究了高温超导(HTS)磁悬浮系统在不同温度下的悬浮性能。我们使用低温测量系统,通过在不同温度下应用两极Halbach阵列的永磁导轨(PMG),研究了HTS的温度和HTS的场冷却高度(FCH)对悬浮力及其力密度的影响。结果表明,悬浮力不仅取决于温度,而且取决于原始的FCH。在低FCH中,温度对悬浮力的影响相当小。然而,已经证实,在高FCH中,HTS的悬浮力在较低的温度下比在较高的温度下更大。此外,通过施加60 K的温度,与35 mm和40 mm FCH中77 K时的力密度相比,系统的悬浮力密度可以提高65%和57.3%。因此,在低温区域和高FCH下可以利用更多的磁能。磁悬浮系统性能的提高将直接促进HTS磁悬浮应用的发展,并为进一步的HTS磁悬浮车辆提供帮助。

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