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    • 9. 发明授权
    • Uses of hydrocarbon nanorings
    • 碳纳米管的使用
    • US09000660B2
    • 2015-04-07
    • US12946052
    • 2010-11-15
    • Laurence H. Cooke
    • Laurence H. Cooke
    • F03H1/00F03H99/00B82Y30/00H02N11/00H04B13/00
    • F03H3/00B64G1/409B82Y30/00F03H99/00H02N11/00H04B13/00Y10S977/771Y10S977/932
    • Hydro-carbon nanorings may be used, e.g., in power storage power transmission and transportation. Sufficiently cooled, an externally hydrogen doped carbon nanoring may be used to create a radial dipole containment field for electrons rotating in the nanoring. Such nanorings may transmit DC current with little or no loss. Similarly, an internally hydrogen doped carbon nanoring may be used to create a radial dipole containment field for positrons rotating in the nanoring. Virtually lossless transmission of AC current may be achieved by pairing such streams of electrons and positrons in their respective containment fields. Closed rotation of such streams may also be used to efficiently store large amounts of electrical energy. Finally, by selectively accelerating and decelerating pairs of such paired electron and positron streams, which are moving at relativistic speeds, differential momentum may be created to cause physical movement.
    • 水力碳纳米管可以用于例如储能动力传输和运输。 可充分冷却,可以使用外部氢掺杂的碳纳米来产生用于在纳米中旋转的电子的径向偶极遏制场。 这种纳米结构可以传输直流电流很少或没有损失。 类似地,可以使用内部氢掺杂碳纳米来产生在纳米中旋转的正电子的径向偶极遏制场。 AC电流的几乎无损传输可以通过将这样的电子和正电子流配对在它们各自的容纳场中来实现。 这种流的闭合旋转也可用于有效地存储大量的电能。 最后,通过选择性地加速和减速成对的这种以相对速度移动的电子和正电子流,可能产生差异动量以引起物理运动。
    • 10. 发明申请
    • Efficient Electromagnetic Propulsion System With Communications Capability
    • 具有通信能力的高效电磁推进系统
    • US20140345251A1
    • 2014-11-27
    • US13894992
    • 2013-05-15
    • John P. McLeanDavid R. McLean
    • John P. McLeanDavid R. McLean
    • F03H99/00
    • F03H99/00
    • An electronic propulsion engine that creates a propulsive force or thrust using electromagnetic forces or electrostatic forces, with an effect that is similar to the thrust of a jet or rocket engine. Forces are generated using electromagnets or capacitor plates that are separated by dielectric spacer cores and are operated with two modulated currents. The two modulated currents are synchronized, but with a relative phase such that the forces on the two magnets or capacitor plates are not balanced. Included are techniques to reduce circuit impedance and control electric-magnetic field dispersion, such as tuned LCR circuits, dielectric core materials between the magnets or capacitor plates, and RF superconductors result in high propulsion efficiencies. The system operates at RF frequencies and can also be used as a communication device.
    • 电子推进发动机,其使用电磁力或静电力产生推进力或推力,其效果类似于喷气式或火箭发动机的推力。 力是由电磁体或电容器板产生的,这些电极或电容器板由电介质隔离芯分开,并以两个调制电流工作。 两个调制电流是同步的,但具有相对相位,使得两个磁体或电容器板上的力不平衡。 包括减少电路阻抗和控制电磁场色散的技术,例如调谐的LCR电路,磁体或电容器板之间的介质芯材料和RF超导体导致高的推进效率。 该系统以RF频率工作,也可用作通信设备。