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Radon signals in geological (natural) geogas and in a simultaneous enhanced confined mode simulation experiment

机译:地质(天然)地气中的信号以及同时增强的密闭模式模拟实验中的信号

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摘要

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:经过增强的密闭模式(ECM)simulation模拟实验(在耶路撒冷的实验室中进行了测试),将其移至相距400千米的地下地球物理观测站,深度为150微米,温度稳定。在ECM罐周围放置了五个伽马传感器,铅屏蔽层将自然伽马辐射的影响最小化。在ECM系统中同时测量地质ra和来自measurement的信号表明,ECM系统中来自from的伽马射线的时间变化包含年度,多天和每日的信号,这些信号与本地地质ra中的信号相对应。这意味着常见的外部驱动器会影响地质the和ECM罐内部ra的辐射方向图。一旦在BGO激活,实验室中发生的实验系统的典型变化模式就会变为天文台发生的变化模式。这被解释为表明来自ra的辐射的时间模式的整体样式取决于位置。这项研究的结果符合并进一步证实了最近的建议,即太阳辐射的一种成分正在驱动don变化的年和日周期性成分。表明了新的地球物理研究潜力。

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