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    • 1. 发明授权
    • Method of providing impact in vacuum
    • 在真空中提供冲击的方法
    • US09449721B2
    • 2016-09-20
    • US13541702
    • 2012-07-04
    • Colin Jack
    • Colin Jack
    • G21B1/15G21B1/19G21B3/00
    • G21B1/15G21B1/19G21B3/006Y02E30/16
    • In space, a linear accelerator firing charged pellets can be situated at a large distance from a target at which the pellets are aimed. The accelerator can fire a graduated-speed train of pellets over a period of seconds or longer which arrive at the target simultaneously, and impart a large pulse of energy. An accelerator of modest power can thus provide a pulse in the megajoule range, sufficient to ignite fusion. It is necessary to provide course corrections to the pellets, to bring them together with very high precision as they approach the target. An ideal siting is to place the accelerator at the Earth-Moon L1 or L2 Lagrange point, and the fusion target at a point on the surface of the Moon where the pellets will strike at grazing incidence, i.e. on a great circle intersecting the lunar poles. Length of the particle trajectory is over 60000 km.
    • 在空间中,点燃带电粒子的线性加速器可以位于与目标靶相距很远的距离处。 加速器可以在几秒钟或更长的时间内发射一个刻度速度的粒子,同时到达目标,并传递大量的能量脉冲。 因此,适度功率的加速器可以在megajoule范围内提供足以点燃融合的脉冲。 有必要为粒料提供课程校正,以便在接近目标时以非常高的精度将它们组合在一起。 理想的选址是将加速器放置在月球L1或L2拉格朗日点,并且在月球表面上的一个点处的融合目标,其中粒子将在掠过发生时,即在与月球相交的大圆上 。 粒子轨迹长度超过60000公里。
    • 2. 发明申请
    • Method of Providing Impact in Vacuum
    • 在真空中提供影响的方法
    • US20140233687A1
    • 2014-08-21
    • US13541702
    • 2012-07-04
    • Colin Jack
    • Colin Jack
    • G21B1/15
    • G21B1/15G21B1/19G21B3/006Y02E30/16
    • In space, a linear accelerator firing charged pellets can be situated at a large distance from a target at which the pellets are aimed. The accelerator can fire a graduated-speed train of pellets over a period of seconds or longer which arrive at the target simultaneously, and impart a large pulse of energy. An accelerator of modest power can thus provide a pulse in the megajoule range, sufficient to ignite fusion. It is necessary to provide course corrections to the pellets, to bring them together with very high precision as they approach the target. An ideal siting is to place the accelerator at the Earth-Moon L1 or L2 Lagrange point, and the fusion target at a point on the surface of the Moon where the pellets will strike at grazing incidence, i.e. on a great circle intersecting the lunar poles. Length of the particle trajectory is over 60000 km
    • 在空间中,点燃带电粒子的线性加速器可以位于与目标靶相距很远的距离处。 加速器可以在几秒钟或更长的时间内发射一个刻度速度的粒子,同时到达目标,并传递大量的能量脉冲。 因此,适度功率的加速器可以在megajoule范围内提供足以点燃融合的脉冲。 有必要为粒料提供课程校正,以便在接近目标时以非常高的精度将它们组合在一起。 理想的选址是将加速器放置在月球L1或L2拉格朗日点,并且在月球表面上的一个点处的融合目标,其中粒子将在掠过发生时,即在与月球相交的大圆上 。 粒子轨迹长度超过60000公里