氡
环境科学
大气科学
焊剂(冶金)
高度(三角形)
中子
中子通量
气象学
地质学
物理
核物理学
材料科学
几何学
数学
冶金
作者
Yuri Stenkin,Victor Alekseenko,Zeyu Cai,Z. Cao,Claudio Cattaneo,S. W. Cui,E. Giroletti,D. M. Gromushkin,Cong Guo,Xuewen Guo,H. H. He,Ye Liu,Xinhua Ma,O. Shchegolev,P. Vallania,Carlo Vigorito,Jing Zhao
标识
DOI:10.1007/s00024-017-1545-7
摘要
Air radon concentration measurement is useful for research on geophysical effects, but it is strongly sensitive to site geology and many geophysical and microclimatic processes such as wind, ventilation, air humidity and so on inducing very big fluctuations on the concentration of radon in air. On the contrary, monitoring the radon concentration in soil by measuring the thermal neutron flux reduces environmental effects. In this paper, we report some experimental results on the natural thermal neutron flux as well as on the concentration of air radon and its variations at 4300 m asl. These results were obtained with unshielded thermal neutron scintillation detectors (en-detectors) and radon monitors located inside the ARGO-YBJ experimental hall. The correlation of these variations with the lunar month and 1-year period is undoubtedly confirmed. A method for earthquake prediction provided by a global net of en-detectors is currently under study.
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