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Levitation Force Transition of High-Tc Superconducting Bulks Within a Maglev Vehicle System Under Different Dynamic Operation

机译:磁浮车辆系统中不同动态运行条件下高Tc超导块体的悬浮力转变

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In the practical application of a High-Tc Superconducting (HTS) maglev vehicle, the onboard HTS bulks are inevitably exposed to a varying inhomogeneous magnetic field due to limited magnetic field precision during the processing and assembling of the permanent magnetic guideway (PMG). To explore the levitation force of ${rm YBa}_{2}{rm Cu}_{3}{rm O}_{7-{rm x}}$ bulk samples with respect to a PMG in such changing external magnetic fields, we study experimentally the wave detail and general transition of the levitation force at different dynamic operation modes with the aid of a spinning circular PMG. The rotation of the circular PMG simulates translational movement of the superconductor with respect to a PMG and the rotational speed was set under several shift processes for simulating the different running operation speeds of HTS maglev vehicle. The highest linear equivalent experimental speed was 238 km/h. The change in levitation force was almost instantaneous in accordance to the varying of the vertical component of the applied field, and generally attenuated with running time. The saturation behavior after a change in speed was discussed thoroughly. This observed phenomenon is of great importance in the design and application of the HTS maglev system.
机译:在高Tc超导(HTS)磁悬浮车辆的实际应用中,由于在永磁导轨(PMG)的加工和组装过程中磁场精度有限,因此车载HTS块不可避免地会暴露于变化的不均匀磁场中。在这种变化的外部磁场中,探索$ {rm YBa} _ {2} {rm Cu} _ {3} {rm O} _ {7- {rm x}} $相对于PMG的悬浮力,我们借助旋转的圆形PMG,通过实验研究了在不同动态操作模式下的悬浮力的波细节和一般转变。圆形PMG的旋转模拟了超导体相对于PMG的平移运动,并且在几个换挡过程中设置了转速,以模拟HTS磁悬浮车辆的不同运行速度。最高线性当量实验速度为238 km / h。根据所施加磁场的垂直分量的变化,悬浮力的变化几乎是瞬时的,并且通常随运行时间而衰减。彻底讨论了速度变化后的饱和行为。这种观察到的现象在高温超导磁悬浮系统的设计和应用中非常重要。

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