Device and Method for Stimulation of Magnetohydrodynamics
    4.
    发明申请
    Device and Method for Stimulation of Magnetohydrodynamics 有权
    磁流体动力学的装置和方法

    公开(公告)号:US20100328000A1

    公开(公告)日:2010-12-30

    申请号:US12837295

    申请日:2010-07-15

    申请人: Nassim Haramein

    发明人: Nassim Haramein

    IPC分类号: H05H1/10

    摘要: A magnetohydrodynamic simulator that includes a plasma container. The magnetohydrodynamic simulator also includes an first ionizable gas substantially contained within the plasma container. In addition, the magnetohydrodynamic simulator also includes a first loop positioned adjacent to the plasma container, wherein the first loop includes a gap, a first electrical connection on a first side of the gap, a second electrical connection of a second side of the gap, and a first material having at least one of low magnetic susceptibility and high conductivity. The first loop can be made up from an assembly of one or a plethora or wire loop coils. In such cases, electrical connection is made through the ends of the coil wires. The magnetohydrodynamic simulator further includes an electrically conductive first coil wound about the plasma container and through the first loop.

    摘要翻译: 包括等离子体容器的磁流体动力学模拟器。 磁流体动力学模拟器还包括基本上包含在等离子体容器内的第一可电离气体。 此外,磁流体动力学模拟器还包括邻近等离子体容器定位的第一回路,其中第一回路包括间隙,间隙第一侧上的第一电连接,间隙的第二侧的第二电连接, 以及具有低磁化率和高导电率中的至少一种的第一材料。 第一个回路可以由一个或多个绕组线圈组成。 在这种情况下,通过线圈线的端部进行电连接。 磁流体动力学模拟器还包括缠绕在等离子体容器上并通过第一回路的导电的第一线圈。

    Apparatus for magnetic and electrostatic confinement of plasma
    5.
    发明授权
    Apparatus for magnetic and electrostatic confinement of plasma 有权
    用于等离子体磁静电限制的装置

    公开(公告)号:US07569995B2

    公开(公告)日:2009-08-04

    申请号:US11498404

    申请日:2006-08-01

    IPC分类号: H01J23/00 H01J7/24 C23C16/00

    摘要: An apparatus and method for containing plasma and forming a Field Reversed Configuration (FRC) magnetic topology are described in which plasma ions are contained magnetically in stable, non-adiabatic orbits in the FRC. Further, the electrons are contained electrostatically in a deep energy well, created by tuning an externally applied magnetic field. The simultaneous electrostatic confinement of electrons and magnetic confinement of ions avoids anomalous transport and facilitates classical containment of both electrons and ions. In this configuration, ions and electrons may have adequate density and temperature so that upon collisions ions are fused together by nuclear force, thus releasing fusion energy. Moreover, the fusion fuel plasmas that can be used with the present confinement system and method are not limited to neutronic fuels only, but also advantageously include advanced fuels.

    摘要翻译: 描述了用于容纳等离子体和形成场反转配置(FRC)磁拓扑的装置和方法,其中等离子体离子在FRC中的稳定的非绝热轨道中磁性地包含。 此外,电子被静电包含在深能量阱中,通过调谐外部施加的磁场而产生。 电子的同时静电限制和离子的磁约束避免了异常运输,并促进电子和离子的经典控制。 在这种结构中,离子和电子可以具有足够的密度和温度,使得在碰撞时,离子通过核力熔合在一起,从而释放出融合能。 此外,可以与本限制系统和方法一起使用的聚变燃料等离子体不仅限于中子燃料,而且还有利地包括先进的燃料。

    Magnetic and electrostatic confinement of plasma with tuning of electrostatic field
    7.
    发明授权
    Magnetic and electrostatic confinement of plasma with tuning of electrostatic field 有权
    静电场调谐的等离子体磁静电约束

    公开(公告)号:US07439678B2

    公开(公告)日:2008-10-21

    申请号:US11498354

    申请日:2006-08-02

    IPC分类号: H01J7/24 C23C16/00

    摘要: A system and method for containing plasma and forming a Field Reversed Configuration (FRC) magnetic topology are described in which plasma ions are contained magnetically in stable, non-adiabatic orbits in the FRC. Further, the electrons are contained electrostatically in a deep energy well, created by tuning an externally applied magnetic field. The simultaneous electrostatic confinement of electrons and magnetic confinement of ions avoids anomalous transport and facilitates classical containment of both electrons and ions. In this configuration, ions and electrons may have adequate density and temperature so that upon collisions they are fused together by nuclear force, thus releasing fusion energy. Moreover, the fusion fuel plasmas that can be used with the present confinement system and method are not limited to neutronic fuels only, but also advantageously include advanced fuels.

    摘要翻译: 描述了用于容纳等离子体并形成场反转配置(FRC)磁拓扑的系统和方法,其中等离子体离子在FRC中的稳定的非绝热轨道中磁性地包含。 此外,电子被静电包含在深能量阱中,通过调谐外部施加的磁场而产生。 电子的同时静电限制和离子的磁约束避免了异常运输,并促进电子和离子的经典控制。 在这种结构中,离子和电子可以具有足够的密度和温度,使得在碰撞时它们通过核力熔合在一起,从而释放聚变能。 此外,可以与本限制系统和方法一起使用的聚变燃料等离子体不仅限于中子燃料,而且还有利地包括先进的燃料。