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Direct Energy Conversion Nano-hybrid Fuel

机译:直接能量转换纳米混合燃料

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摘要

Most of the exothermic nuclear reactions transfer the mass defect or binding and surplus energy into kinetic energy of the resulting particles. These particles are traveling through material lattices, interacting by ionization and nuclear collisions. Placing an assembly of conductive-insulating layers in the path of such radiation, the ionization energy is transformed into charge accumulation by polarization. The result is a super-capacitor charged by the moving particles and discharged electrically. Another more promising solution is to use bi-material nanoparticles organized such as to act like a serial connection and add the voltage. A spherical symmetry fission products source coated in several nano-layers is desired for such structures. The system may operate as dry or liquid-immersed battery, removing the fission products from the fissile material. There is a tremendous advantage over the current heat flow based thermal stabilization system allowing a power density up to 1000 times higher.
机译:大多数放热核反应将质量缺陷或结合能和剩余能转化为所得颗粒的动能。这些粒子穿过物质晶格,通过电离和核碰撞相互作用。将导电绝缘层的组件放置在这种辐射的路径中,电离能通过极化转换为电荷积累。结果是超级电容器被移动的粒子充电并被电放电。另一个更有希望的解决方案是使用双材料纳米粒子,这种纳米粒子的组织方式类似于串联连接并增加电压。对于这样的结构,期望涂覆有几个纳米层的球形对称裂变产物源。该系统可以作为干电池或浸液电池工作,从易裂变材料中除去裂变产物。与当前的基于热流的热稳定系统相比,它具有极大的优势,可实现高达1000倍的功率密度。

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