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The design of a direct charge nuclear battery with high energy conversion efficiency

机译:具有高能量转换效率的直接电荷核电电池的设计

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Direct charging nuclear batteries (DCNB) have the potential of being widely used to meet the special requirements in the area of aerospace and ocean. The current application of direct charging nuclear batteries is restricted by the low energy conversion efficiency, commonly less than 10%. This low efficiency is limited mainly by issues of low source efficiency and shunt factor among others, such as collection and geometry factors. Based on a numerical simulation and empirical calculations we here propose a design of DCNB by utilization of a sub-micrometer thickness radiation source to increase the source efficiency, both-side emission, and collection of decay particles to improve the collection and geometry factors, as well as impedance matching of batteries and load to improve the shunt factor, among other various optimizations. The energy conversion efficiency of DCNB with this design reaches over 20%. The successful deployment of the current design should vastly improve the energy conversion efficiency of DCNBs, and also establish a theoretical foundation for extending the scope of applications of DCNBs in the future.
机译:直接充电核电电池(DCNB)有可能被广泛用于满足航空航天和海洋地区的特殊要求。目前的直接充电核电电池的应用受到低能量转换效率的限制,通常小于10%。这种低效率主要受到低源效率和分流因子的问题,例如集合和几何因素。基于我们在此提出通过利用子微米厚度辐射源来提高DCNB的设计,以提高源效率,侧面排放和衰减粒子的集合来改善收集和几何因素,如图所示以及电池和负载的阻抗匹配,以改善分流因子,以及其他各种优化。 DCNB具有此设计的能量转换效率超过20%。当前设计的成功部署应大大提高DCNB的能量转换效率,并建立了将来扩展DCNB应用范围的理论基础。

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