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    • 9. 发明申请
    • MAGNETIC GAS ENGINE AND METHOD OF EXTRACTING WORK
    • 磁性发动机及其提取方法
    • US20100089027A1
    • 2010-04-15
    • US12578341
    • 2009-10-13
    • Patrick Craig Muldoon
    • Patrick Craig Muldoon
    • F03H1/00
    • F03H1/0081F02K1/00F02K1/28F02K7/00F02K7/10F02K9/00F03H1/00F05D2210/12F05D2220/10F05D2220/34
    • The present subject matter overcomes the deficiencies in the prior art by introducing or generating charged particles in an air stream and manipulating the air stream with magnetic fields operating on the charged particles. Embodiments of the present subject mater compress the air stream by accelerating charged particles with a moving magnetic field, where the magnetic field has a velocity perpendicular to its flux lines. The increased velocity of the charged particles increases the statistical mean particle velocity and thereby increases the pressure in the air stream. The compressed air stream is then heated and expanded through a second magnetic field. The expansion of the air stream substantially increases the velocity of the air stream and the charged particles therein. The interaction of the high velocity charged particles and the magnetic field imparts a force perpendicular to the flux lines, this force powers the movement of the magnetic field and can also be extracted in the form of mechanical work.
    • 本发明通过在空气流中引入或产生带电粒子并利用在带电粒子上运行的磁场来操纵空气流来克服现有技术中的缺陷。 本发明的实施例通过用移动磁场加速带电粒子来压缩空气流,其中磁场具有垂直于其通量线的速度。 带电粒子的增加的速度增加统计平均粒子速度,从而增加空气流中的压力。 然后将压缩空气流通过第二磁场加热和膨胀。 空气流的膨胀大大增加了空气流和其中的带电粒子的速度。 高速带电粒子与磁场的相互作用赋予垂直于磁通线的力,该力为磁场的运动提供动力,也可以以机械作业的形式提取。
    • 10. 发明授权
    • Magnetic gas engine and method of extracting work
    • 磁性气体发动机及其提取方法
    • US07602096B2
    • 2009-10-13
    • US11362928
    • 2006-02-28
    • Patrick Craig Muldoon
    • Patrick Craig Muldoon
    • H02K1/22
    • F03H1/0081F02K1/00F02K1/28F02K7/00F02K7/10F02K9/00F03H1/00F05D2210/12F05D2220/10F05D2220/34
    • The present subject matter overcomes the deficiencies in the prior art by introducing or generating charged particles in an air stream and manipulating the air stream with magnetic fields operating on the charged particles. Embodiments of the present subject matter compress the air stream by accelerating charged particles with a moving magnetic field, where the magnetic field has a velocity perpendicular to its flux lines. The increased velocity of the charged particles increases the statistical mean particle velocity and thereby increases the pressure in the air stream. The compressed air stream is then heated and expanded through a second magnetic field. The expansion of the air stream substantially increases the velocity of the air stream and the charged particles therein. The interaction of the high velocity charged particles and the magnetic field imparts a force perpendicular to the flux lines, this force powers the movement of the magnetic field and can also be extracted in the form of mechanical work.
    • 本发明通过在空气流中引入或产生带电粒子并利用在带电粒子上运行的磁场来操纵空气流来克服现有技术中的缺陷。 本主题的实施例通过用移动磁场加速带电粒子来压缩空气流,其中磁场具有垂直于其磁通线的速度。 带电粒子的增加的速度增加统计平均粒子速度,从而增加空气流中的压力。 然后将压缩空气流通过第二磁场加热和膨胀。 空气流的膨胀大大增加了空气流和其中的带电粒子的速度。 高速带电粒子与磁场的相互作用赋予垂直于磁通线的力,该力为磁场的运动提供动力,也可以以机械作业的形式提取。