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Elementary study on superconducting electromagnetic ships with helical insulation wall

机译:螺旋绝缘壁超导电磁船的初步研究

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We, Kobe University of Mercantile Marine (KUMM) and Institute of Electrical Engineering (IFE) research teams, have carried out in Japan, the joint experimental test of the high magnetic field (approx 14 T) superconducting electromagnetic ship performance in cooperation with the researchers of NRIM. In this experimental study, the major system components are thruster, seawater circulating system and various measuring instruments. The NRIMs 15 T class superconducting magnet that forms the outmost member of the 40 T class hybrid magnet was used. The flow guide and flow rectifier are of same lengths of 0.2 m, and the length of the electrodes ate 0.6 m. The anode's outer diameter is 0.1 m, and the cathode's inner diameter is 0.346 m. The helical insulation wall is 10 mm thick and the pitch number is 3.8. During the experiment, magnetic fields were changed to six stages 3, 5, 8, 10, 12 and 14 T, whereby seawater pressures, temperatures and flow rates were measured. Electric currents were changed from 10 to 700 A. In one of results, the thruster efficiency increases in association with the increase of the magnetic field. It has been demonstrated that the helical-type superconducting electromagnetic thruster is superior, in terms of thruster efficiency, than that of earlier works by Iwata et al. and YAMATO-1's group. So, it is considered that this thruster is better suited to commerical application than earlier works.
机译:我们,神户商船大学(KUMM)和电机工程研究所(IFE)的研究团队在日本与研究人员合作进行了高磁场(约14 T)超导电磁船性能的联合实验测试NRIM。在本实验研究中,主要系统组件是推进器,海水循环系统和各种测量仪器。使用了NRIMs 15 T类超导磁体,该磁体构成了40 T类混合磁体的最外层。导流板和整流器的长度相同,为0.2 m,电极的长度为0.6 m。阳极的外径为0.1 m,阴极的内径为0.346 m。螺旋绝缘壁为10毫米厚,节距数为3.8。在实验过程中,将磁场更改为3、5、8、10、12和14 T六个阶段,从而测量了海水压力,温度和流速。电流从10 A变为700A。结果之一是,推进器效率随磁场的增加而增加。已经证明,在推进器效率方面,螺旋型超导电磁推进器比Iwata等人的早期工作优越。和YAMATO-1的小组因此,可以认为该推力器比早期的产品更适合商业应用。

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