首页> 外文期刊>Proceedings of the Royal Society. Mathematical, physical and engineering sciences >Radon signals in geological (natural) geogas and in a simultaneous enhanced confined mode simulation experiment
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Radon signals in geological (natural) geogas and in a simultaneous enhanced confined mode simulation experiment

机译:地质(自然)地质中的氡信号和同时增强的局限性仿真实验

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An enhanced confined mode (ECM) radon simulation experiment, tested in the laboratory in Jerusalem, was relocated to a subsurface geophysical observatory located 400 km apart, at a depth of 150 m and with a stable temperature. Five gamma sensors are placed around the ECM canister and lead shielding minimizes the influence of natural local gamma radiation. Simultaneous measurement of the geological radon and from radon in the ECM system indicates that the temporal variation of gamma radiation from radon in the ECM system contains annual, multi-day and daily signals, that correspond to signals in the local geological radon. This implies that a common external driver influences the radiation pattern of the geological radon and from radon inside the ECM canister. Once activated at BGO the typical variation pattern of the experimental system occurring in the laboratory changed to that occurring at the observatory. This is interpreted to indicate that the overall style of the temporal patterns of radiation from radon is site dependent. The outcome of this investigation conforms and further substantiates the recent suggestion that a component in solar radiation is driving the annual and daily periodic components in the variation of radon. New geophysical research potential is indicated.
机译:在耶路撒冷实验室中测试的增强型狭窄模式(ECM)氡仿真实验被迁移到分开400公里的地下地球物理天文台,深度为150米并且温度稳定。将五个伽马传感器放置在ECM罐周围,引线屏蔽可最大限度地减少天然局部伽马辐射的影响。地质氡和来自ECM系统中的氡的同时测量表明ECM系统中氡气辐射的时间变化包含年度,多日和每日信号,对应于当地地质氡中的信号。这意味着普通的外部驱动器影响地质氡和从ECM罐内的氡的辐射模式。一旦在BGO下被激活,实验室中发生的实验系统的典型变化模式变为在天文台发生的情况。这被解释为表明来自氡的辐射时间模式的总体风格是依赖于站点。该调查的结果符合并进一步证实了最近的建议,即太阳辐射的组件在氡的变化中驾驶年度和日常定期组分。表明了新的地球物理研究潜力。

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