[1] Raymond S, Robert V, et al, Particle production by rotational abrasion between graphite spheres[J]. Nuclear Technology,2015,191(1):71-91. [2] 周红波,齐炜炜,陈景. 模块式高温气冷堆的特点与发展[J].中外能源,2015,9(20):35-40. ZHOU Hongbo, QI Weiwei, CHEN Jing. Characteristics and development of modular high-temperature gas-cooled reactors[J]. Sino- global Energy,2015,9(20):35-40. [3] 吴宗鑫.我国高温气冷堆的发展[J].核动力工程,2000,21(1):39-43. WU Zongxin. The development of high temperature gas-cooled reactor in China[J]. Nuclear Power Engineering, 2000,21(1):39-43. [4] 马绍川,皱彦文. 10 MW高温气冷堆用石墨材料的研究[J].高技术通讯,1994,4(9):25-30. MA Shaochuang, ZOU Yanwen. Study of the graphite used for the 10 MW HTR[J]. High Technology Letter, 1994, 4 (9): 25-30. [5] Humrickhouse.HTGR dust safety issues and needs for research and development[R].Office of Scientific & Technical Information Technical Reports.2011. [6] 陈志鹏,于溯源.高温气冷堆一回路管道内石墨粉尘沉积模型分析[J].过程工程学报,2010,4(10):211-215. CHEN Zhipeng, YU Shuyuan. Development of modeling deposition of graphite particles in high10 temperature gas-cooled reactor[J]. The Chinese Journal of Process Engineering, 2010,4(10):211-215. [7] Association of German Engineers (VDI). AVR—Experimental High-temperature Reactor. 21 Years of Successful Operation for a Future Energy Technology [R]. 1990. [8] 郭丽潇,邓少刚,梁宇,等.高温气冷堆石墨粉尘产生及性质研究报告[R].中国辐射防护研究院,2017. GUO Lixiao, DENG Shaogang, LIANG Yu, et al. Study report on the generation and properties of graphite dust in high temperature gas-cooled reactor[R].China Institute for Radiation Protection,2017. [9] 郭仁炳.规则球粒堆积体的孔隙度[J].中国地质大学学报,1994,19(4):503-508. GUO Renbing. Porosity of regular spherulitic accumulation[J].Earth Science——Journal of China University of Geosciences,1994,19(4):503-508. [10] 雒晓卫. 10 MW 高温气冷堆中石墨粉尘行为研究[D].北京:清华大学.2005. LUO Xiaowei. Research on graphite dust behavior in 10 MW high temperature gas-cooled reactor[D].Beijing: Tsinghua University,2005. |