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Corona discharge in a nuclear excited dusty plasma

机译:核激发尘埃等离子体中的电晕放电

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A nuclear excited dusty plasma can be used effectively in systems of direct nuclear energy conversion into optical radiation energy. The problem is considered in terms of continuum equations. A general complete solution of the problem of a corona discharge in a nuclear excited, weakly ionized plasma can be obtained only numerically. The ionization and excitation of the gaseous medium were produced by a corona discharge and uranium fission fragments propagating away from the walls and dust particles, which leads to a significant dependence of the dust particle charge on its position in space. The successive positions of dust particles with an interval of 1.5 s form the vortex trajectories. In this case, two vortices slowly rotating toward each other with dust particles ordered in them are gradually formed.
机译:核激发的尘埃等离子体可以有效地用于直接将核能转换为光辐射能的系统中。从连续方程来看这个问题。只能通过数值获得在核激发的弱电离等离子体中电晕放电问题的一般完整解决方案。气态介质的电离和激发是通过电晕放电和铀裂变碎片从壁和尘埃颗粒中传播而产生的,这导致尘埃颗粒电荷在空间位置上有很大的依赖性。尘埃颗粒的连续位置间隔为1.5 s,形成了涡旋轨迹。在这种情况下,逐渐形成了两个旋涡,它们之间依次排列着尘埃颗粒,彼此缓慢旋转。

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