• NUCLEAR TECHNIQUES
  • Vol. 46, Issue 11, 110402 (2023)
Rengui HUANG1、2, Ying ZHAO1、2, Yuze LI1、2, Hongtao NING2, Hongyan ZHOU2、*, Hua MAO2, Jian XIAO2, Mengren XIAO1、2, and Pei HUANG3
Author Affiliations
  • 1Observatory for Geodynamic of the East Yangtze Block in Jiujiang, Jiujiang 332006, China
  • 2Jiangxi Earthquake Agency, Nanchang 330039, China
  • 3East China Institute of Technology, Nanchang 330013, China
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    DOI: 10.11889/j.0253-3219.2023.hjs.46.110402 Cite this Article
    Rengui HUANG, Ying ZHAO, Yuze LI, Hongtao NING, Hongyan ZHOU, Hua MAO, Jian XIAO, Mengren XIAO, Pei HUANG. Study on the calibration method of newly connected seismic water radon monitor[J]. NUCLEAR TECHNIQUES, 2023, 46(11): 110402 Copy Citation Text show less
    References

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    [2] LIU Lei, SU Weigang, LI Xia et al. Anomaly characteristics of radon in escape gas in Qinghai area before Menyuan M6.9 earthquake on January 8, 2022[J]. China Earthquake Engineering Journal, 44, 380-388(2022).

    [3] HUANG Rengui, ZHAO Ying, LI Yuze et al. Preliminary study on the traceability of the observation and measurement of radon for earthquake monitoring[J]. Earthquake, 39, 183-190(2019).

    [4] REN Hongwei, YAO Yuxia, HUANG Rengui et al. A new calibration method of emanometer in earthquake monitoring[J]. Earthquake, 36, 46-54(2016).

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    [9] HUANG Rengui, ZHOU Hongyan, REN Hongwei et al. Design of seismic gas radon observation system based on hydromechanics[J]. Journal of Shenzhen University (Science and Engineering), 36, 531-537(2019).

    [10] ZHANG Wei, XING Yu'an, XING Ruying. Variation of dispersion of radon content in groundwater and short-term and imminent precursors of earthquakes[J]. Acta Seismologica Sinica, 9, 312-318(1987).

    [11] HUANG Rengui, XIAO Jian, LI Yuze et al. A preliminary study of the design of emanometer measurement platform in earthquake monitoring[J]. China Earthquake Engineering Journal, 40, 163-169(2018).

    [12] SHENG Yunfeng, WAN Jun. Study on the method for calibration of radon detector with canned radon[J]. Radiation Protection, 37, 472-475(2017).

    [13] HUANG Rengui, LI Yuze, ZHAO Ying et al. Main performance test of field comparison system of seismic radon observation instrument[J]. Nuclear Electronics & Detection Technology, 42, 1108-1115(2022).

    [14] HUANG Rengui, CHEN Jiaxing, XU Yunting et al. Design of detection platform for radon observation instrument for earthquake monitoring[J]. China Metrology, 85-88(2019).

    [15] HUANG Rengui, LUO Qibin, YAO Yuxia et al. Calibration experiment of earthquake radon measuring instrument using the miniature radon chamber[J]. Journal of Geodesy and Geodynamics, 40, 865-869(2020).

    [16] HUANG Rengui, CHEN Junsong, ZHOU Hongyan et al. Metrological verification system of seismic radon observation instrument and its experimental analysis[J]. Earthquake Research in China, 35, 666-675(2019).

    [17] XIONG Rui. Design and implementation of HD-MIN miniature radon chamber control system[D](2015).

    [18] ZHANG Xiongjie, ZHANG Ye, TANG Bin et al. The discussion on radioactive equilibrium variation in airtight radon chamber[J]. Nuclear Electronics & Detection Technology, 32, 192-195(2012).

    [21] YAN Yifan, LIANG Juncheng, YANG Zhijie et al. Research on the method of traceability the value of standard radon monitor[J]. Acta Metrologica Sinica, 41, 250-256(2020).

    [22] ZHANG Yang, XU Ming, SUN Gaofeng et al. Solution of building the standard laboratory of radon[J]. Acta Metrologica Sinica, 38, 234-237(2017).

    [23] YANG Zhijie, LI Zeshu, HOU Shengli et al. Research on the progeny volume activity measuring method of 222Rn with liquid scintillation counting[J]. Acta Metrologica Sinica, 328-332(2015).

    Rengui HUANG, Ying ZHAO, Yuze LI, Hongtao NING, Hongyan ZHOU, Hua MAO, Jian XIAO, Mengren XIAO, Pei HUANG. Study on the calibration method of newly connected seismic water radon monitor[J]. NUCLEAR TECHNIQUES, 2023, 46(11): 110402
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