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Haozhe Kong, Shixin Ren, Jiaqi Dong, Hongfeng Zhu, Mingliang Cai, Wenhao Li, Ming Li, Xiaohe Liu, Yan Yu, Zhihui Liu, Renyi Tao, Junjie Shi, Hanqing Wang, Xiang Gu, Chao Wu, Xingxin Ge, Yue Zhao, Xu Yao, Liming Dong, Kun Wu, Jian Wei, Lei Han, Yumin Wang, Yunfeng Liang, Huasheng Xie, Minsheng Liu. Experimental study on electrostatic direct conversion of kinetic energy of charged energetic particles to electric energyJ. Plasma Science and Technology. DOI: 10.1088/2058-6272/ae445a
Citation: Haozhe Kong, Shixin Ren, Jiaqi Dong, Hongfeng Zhu, Mingliang Cai, Wenhao Li, Ming Li, Xiaohe Liu, Yan Yu, Zhihui Liu, Renyi Tao, Junjie Shi, Hanqing Wang, Xiang Gu, Chao Wu, Xingxin Ge, Yue Zhao, Xu Yao, Liming Dong, Kun Wu, Jian Wei, Lei Han, Yumin Wang, Yunfeng Liang, Huasheng Xie, Minsheng Liu. Experimental study on electrostatic direct conversion of kinetic energy of charged energetic particles to electric energyJ. Plasma Science and Technology. DOI: 10.1088/2058-6272/ae445a

Experimental study on electrostatic direct conversion of kinetic energy of charged energetic particles to electric energy

  • Direct fusion energy conversion to electric energy constitutes a key task of ENN’s spherical torus proton-boron fusion energy development project. Prior to fusion alpha-particle obsevation in experiment, ENN conducted low-parameter experiments on direct conversion of kinetic energy of charged particles to electric energy to validate the principles of the electrostatic direct energy conversion (DEC) base on a fundamental unit structure and address the current shortage of first-hand experimental data. This paper reports the recent experimental results on DEC at ENN, which demonstrate an energy conversion efficiency exceeding 80% and indicate that the space-charge density of extracted alpha particles may not be a major factor affecting the conversion efficiency in EHL-3B or in future fusion reactors. It also discusses the problems encountered during the experiments and potential directions for future device optimization.
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