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首页> 外文期刊>Journal of Applied Physics >Measurements of Energy Losses in Pulsed Superconducting Magnets
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Measurements of Energy Losses in Pulsed Superconducting Magnets

机译:脉冲超导磁体中能量损耗的测量

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Measurements have been made of ac power losses in a number of small superconducting magnets. The losses were determined by the volume of helium vaporized. The magnets had inductances from 1.4 to 47 mH and were wound with commercially available, half‐inch wide, partially stabilized Nb3Sn ribbon. They were powered by sawtooth current pulses of 1 to 1/20 Hz, similar to those of a proton synchrotron and also by sinusoidal current waveforms of 60 Hz. Peak currents ranged from 1–1100 A and the corresponding peak fields from about 500–50 000 G. It is found that at low frequencies, loss per cycle is independent of frequency. It is also found that at low frequencies and moderate fields, the loss depends only on the total field change and is largely independent of current or of steady components of field. Losses measured at 60 Hz and low fields are in agreement with these low‐frequency results where the data overlap. Losses obtained from magnets of different geometries can be correlated on the basis of the average component of peak field normal to the ribbon surface. Losses at high fields are quite dependent on winding density, which is attributed to a diamagnetic or field‐exclusion effect. They increase with Nb3Sb content at high fields, but tend to be independent of Nb3Sb content at low fields. Losses vary approximately as the 2.5 power of the change in field. The ratio of energy stored to energy dissipated is about the same in all magnets in moderate to high fields. The results are compared with theory and with those of other experimenters.
机译:已经对许多小型超导磁体中的交流功率损耗进行了测量。损失由蒸发的氦气量决定。磁铁的电感为1.4至47 mH,并用市售的半英寸宽,部分稳定的Nb3Sn薄带缠绕。它们由1至1/20 Hz的锯齿电流脉冲供电,类似于质子同步加速器的脉冲,还由60 Hz的正弦电流波形供电。峰值电流范围为1–1100 A,相应的峰值场范围为500–50 000G。发现在低频下,每个周期的损耗与频率无关。还发现在低频和中等磁场下,损耗仅取决于总的磁场变化,并且在很大程度上与电流或稳定的磁场分量无关。在60 Hz和低频下测得的损耗与数据重叠的低频结果一致。从不同几何形状的磁体获得的损耗可以基于垂直于带状表面的峰值场的平均分量进行关联。高磁场下的损耗在很大程度上取决于绕组密度,这归因于抗磁或磁场排斥效应。它们在高场下随Nb3Sb含量增加而增加,但在低场下趋于独立于Nb3Sb含量。损耗随场变化的2.5幂而变化。在中等磁场到高磁场中,所有磁体中存储的能量与耗散的能量之比大致相同。将结果与理论以及其他实验者进行比较。

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    《Journal of Applied Physics》 |1969年第4期|共9页
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  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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