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Groundwater helium anomaly reflects strain change during the 2016 Kumamoto earthquake in Southwest Japan

机译:地下水氦异常反映了2016年日本西南部熊本地震期间的应变变化

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摘要

Geochemical monitoring of groundwater and soil gas emission pointed out precursor and/or coseismic anomalies of noble gases associated with earthquakes, but there was lack of plausible physico-chemical basis. A laboratory experiment of rock fracturing and noble gas emission was conducted, but there is no quantitative connection between the laboratory results and observation in field. We report here deep groundwater helium anomalies related to the 2016 Kumamoto earthquake, which is an inland crustal earthquake with a strike-slip fault and a shallow hypocenter (10 km depth) close to highly populated areas in Southwest Japan. The observed helium isotope changes, soon after the earthquake, are quantitatively coupled with volumetric strain changes estimated from a fault model, which can be explained by experimental studies of helium degassing during compressional loading of rock samples. Groundwater helium is considered as an effective strain gauge. This suggests the first quantitative linkage between geochemical and seismological observations and may open the possibility to develop a new monitoring system to detect a possible strain change prior to a hazardous earthquake in regions where conventional borehole strain meter is not available.
机译:地下水和土壤气体排放的地球化学监测指出了与地震有关的稀有气体的前兆和/或同震异常,但缺乏合理的理化基础。进行了岩石破裂和稀有气体排放的实验室实验,但实验室结果与现场观察之间没有定量联系。我们在这里报告与2016年熊本地震有关的深层地下水氦异常现象,这是内陆地壳地震,具有走滑断层,震源较浅,靠近日本西南部人口稠密的地区(深度10 km)。地震后观察到的氦同位素变化与断层模型估计的体积应变变化定量结合,这可以通过岩石样品压缩加载过程中氦气脱气的实验研究来解释。地下水氦被认为是有效的应变仪。这表明了地球化学和地震观测之间的首次定量联系,并可能为开发新的监测系统提供了可能性,以在没有常规井眼应变仪的地区发生危险地震之前检测出可能的应变变化。

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