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    • 7. 发明申请
    • PLASMA CONTAINMENT METHOD
    • 等离子体容纳方法
    • US20070098129A1
    • 2007-05-03
    • US11535307
    • 2006-09-26
    • W. EdwardsEric Held
    • W. EdwardsEric Held
    • G21B1/00
    • H05G2/003G21B1/05H05H1/02H05H3/06Y02E30/126
    • A method for plasma containment is disclosed comprising varying the system energy subject to Maxwell's equations, momentum moment equations, and adiabatic equations of state, without imposing a quasi-neutrality condition. In one embodiment, electrons are confined by magnetic forces and ions by internal, electrostatic forces that arise due to charge separation of the two fluids. In one embodiment, input parameters for the energy variation process are selected so as to satisfy a plasma beta parameter condition, thereby reducing the number of control variables by one. The radial scale length for cylindrically symmetric plasmas in one-dimensional equilibrium is characterized by the electron skin depth. Such plasmas can be confined as a high aspect ratio toroid having compact dimensions. Applications of the invention include neutron generation, x-ray generation, and power generation.
    • 公开了一种用于等离子体容纳的方法,其包括根据麦克斯韦方程,动量矩方程和绝热方程来改变系统能量,而不施加准中立条件。 在一个实施例中,由于两种流体的电荷分离而产生的内部静电力,电子被磁力和离子限制。 在一个实施例中,选择用于能量变化过程的输入参数以满足等离子体β参数条件,从而将控制变量的数量减少1。 一维平衡中圆柱对称等离子体的径向刻度长度的特征在于电子趋肤深度。 这种等离子体可以被限制为具有紧凑尺寸的高纵横比环形线圈。 本发明的应用包括中子生成,x射线产生和发电。
    • 9. 发明申请
    • PLASMA CONTAINMENT METHOD
    • 等离子体容纳方法
    • US20070206716A1
    • 2007-09-06
    • US11624672
    • 2007-01-18
    • W. EdwardsEric Held
    • W. EdwardsEric Held
    • G21B1/00
    • H05H1/12Y02E30/126
    • A method for plasma containment comprises varying the system energy subject to Maxwell's equations, momentum moment equations, and adiabatic equations of state, without imposing a quasi-neutrality condition. In one embodiment, electrons are confined by magnetic forces and ions by internal, electrostatic forces that arise due to charge separation of the two fluids. In one embodiment, input parameters for the energy variation process are selected so as to satisfy a plasma beta parameter condition, thereby reducing the number of control variables by one. The radial scale length for cylindrically symmetric plasmas in one-dimensional equilibrium is characterized by the electron skin depth. Such plasmas can be confined as a high aspect ratio toroid having compact dimensions. Applications of the invention include neutron generation, x-ray generation, and power generation.
    • 等离子体遏制的方法包括改变受麦克斯韦方程,动量矩方程和绝热方程状态的系统能量,而不施加准中立条件。 在一个实施例中,由于两种流体的电荷分离而产生的内部静电力,电子被磁力和离子限制。 在一个实施例中,选择用于能量变化过程的输入参数以满足等离子体β参数条件,从而将控制变量的数量减少1。 一维平衡中圆柱对称等离子体的径向刻度长度的特征在于电子趋肤深度。 这种等离子体可以被限制为具有紧凑尺寸的高纵横比环形线圈。 本发明的应用包括中子生成,x射线产生和发电。