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MAGNETIC PROPULSION METHOD AND MECHANISM USING MAGNETIC FIELD TRAPPING SUPERCONDUCTORS

机译:磁场俘获超导体的磁推进方法及机理

摘要

Object of the present invention is to describe a method for the creation of propulsive force developing magnetic machines and mechanisms for the embodiment of the method. The method consists in the creation of a magnetic field by means of a magnet (3), like a permanent magnet or a superconductive solenoid, in the creation of a mechanism (2) inside of which a propulsive force is developed, the solid parts of which are those of a hydrodynamic machine made of a superconductor, like a type II superconductor, e.g. a superconductor Sm - Ba - Cu - O, with high magnetic field trapping ability, where the magnetic field generated by the interaction of the magnet (3) with the mechanism (2), at the output of which is connected the magnet (3), acts in the form of pressure on the mechanism (2), creating the intended propulsion. The mechanism (2) may be a converging nozzle, made of a superconductor (1), which conjointly with the magnet (3) act as self-propulsion mechanism with direction towards the converging area. The mechanism (2) may also be a hydrodynamic pump made of the superconductor (1), which conjointly with the superconductive magnet of the solenoid type (3) operate as magnetic motor, where the cooling conditions are created by the same pump that circulates the cooling medium, which may be liquid Helium. The developing force according to the present invention may be used for the propulsion required for any machine or vehicle, as well as for the production of energy.
机译:发明内容本发明的目的是描述一种用于产生推进力的磁力机器的方法以及用于该方法的实施方式的机构。该方法包括借助于磁体(3)(例如永磁体或超导螺线管)产生磁场,其中产生机构(2),在机构内部产生推进力,该机构的固体部分这是由超导体(例如II型超导体)制成的水力机械的那些,例如具有高磁场捕获能力的超导体Sm-Ba-Cu-O,其中磁体(3)与机构(2)相互作用产生的磁场在磁体的输出处与磁体(3)连接,以压力的形式作用在机构(2)上,产生预期的推进力。机构(2)可以是由超导体(1)制成的会聚喷嘴,其与磁体(3)一起作为朝着会聚区域的方向的自推进机构。机构(2)也可以是由超导体(1)制成的流体动力泵,它与螺线管类型(3)的超导磁体一起作为电磁电机运行,在该冷却条件下,循环泵是由相同的泵产生的冷却介质,可能是液态氦。根据本发明的显影力可以用于任何机器或车辆所需的推进力,以及用于产生能量。

著录项

  • 公开/公告号WO2010131056A2

    专利类型

  • 公开/公告日2010-11-18

    原文格式PDF

  • 申请/专利权人 NASSIKAS A. ATHANASSIOS;

    申请/专利号WO2010GR00022

  • 发明设计人 NASSIKAS A. ATHANASSIOS;

    申请日2010-05-06

  • 分类号H02N11/00;

  • 国家 WO

  • 入库时间 2022-08-21 18:00:34

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