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首页> 外文期刊>Atmospheric research >Ground level gamma-ray and electric field enhancements during disturbed weather: Combined signatures from convective clouds, lightning and rain
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Ground level gamma-ray and electric field enhancements during disturbed weather: Combined signatures from convective clouds, lightning and rain

机译:天气不佳时地面伽马射线和电场增强:对流云,闪电和雨水的综合信号

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摘要

We report coincidences of ground-level gamma-ray enhancements with precipitation events and strong electric fields typical of thunderstorms, measured at the Emilio Segre Cosmic Ray observatory located on the western slopes of Mt. Hermon in northern Israel. The observatory hosts 2 x 2 '' Nal(TI) gamma ray scintillation detectors alongside a vertical atmospheric electric field (E-z) mill and conduction current (J(z)) plates. During several active thunderstorms that occurred near the Mt. Hermon station in October and November 2015, we recorded prolonged periods of gamma ray enhancements, which lasted tens of minutes and coincided with peaks both in precipitation and the vertical electric field. Two types of events were detected: slow increase (up to similar to 300 min) of atmospheric gamma ray radiation due to radon progeny washout (or rainout) along with minutes of E-z enhancement, which were not associated with the occurrences of nearby CG lightning discharges. The second type showed 30 min bursts of gamma rays, coinciding with minutes of E-z enhancement that closely matched the occurrences of nearby CG lightning discharges, and are superimposed on the radiation from radon daughters washed out to near surface levels by precipitation. We conclude that a superposition of accelerated high energy electrons by thunderstorm electric fields and radon progeny washout (or rainout) explains the relatively fast near surface gamma-ray increase, where the minutes-scale vertical electric field enhancement are presumably caused due to nearby convective clouds. Our results show that the mean exponential half-life depletion times of the residual nuclei produced during events without lightning occurrences were between similar to 25-65 min, compared to similar to 55-100 min when lightning was present, indicating that different types of nuclei were involved.
机译:我们报告了地面伽玛射线增强与降水事件和雷暴典型的强电场之间的巧合,这是在山西坡的Emilio Segre宇宙射线天文台测得的。以色列北部的赫蒙。该天文台装有2 x 2英寸Nal(TI)伽马射线闪烁探测器,旁边还有垂直大气电场(E-z)磨和传导电流(J(z))板。在山附近发生几次活跃的雷暴期间。在2015年10月和2015年11月的Hermon站,我们记录了长时间的伽马射线增强,持续了数十分钟,并且与降水和垂直电场的峰值同时发生。检测到两种类型的事件:由于ra子体的冲刷(或降雨)以及Ez增强的分钟而导致的大气伽马射线辐射的缓慢增加(多达300分钟),与附近CG闪电放电的发生无关。第二种类型显示了30分钟的伽马射线爆发,这与几分钟的E-z增强相吻合,这与附近CG闪电放电的发生非常匹配,并且被叠加在from子的辐射上,这些daughter子被降水冲刷到了近地表水平。我们得出的结论是,雷暴电场和pro子后冲(或降雨)对加速高能电子的叠加说明了近地表伽马射线的增加相对较快,其中分钟尺度的垂直电场增强可能是由于附近的对流云造成的。我们的结果表明,在没有雷电发生的事件中产生的剩余核的平均指数半衰期耗竭时间大约为25-65分钟,而闪电时则为55-100分钟,表明不同类型的核参与。

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  • 来源
    《Atmospheric research》 |2017年第11期|142-150|共9页
  • 作者单位

    Ariel Univ, Dept Mech Engn & Mechatron, Ariel, Israel|Eastern R&D Ctr, Ariel, Israel|Interdisciplinary Ctr IDC Herzliya, Sch Sustainabil, Herzliyya, Israel;

    Interdisciplinary Ctr IDC Herzliya, Sch Sustainabil, Herzliyya, Israel;

    Tel Aviv Univ, Dept Geosci, Ramat Aviv, Israel;

    Geol Survey Israel, Jerusalem, Israel;

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