{"title":"2016 年熊本地震前后热水中的深层流体。","authors":"Fumiaki Tsunomori, Noritoshi Morikawa, Masaaki Takahashi","doi":"10.1111/gwat.13394","DOIUrl":null,"url":null,"abstract":"<p>Noble gases, oxygen-hydrogen isotope ratios, and ion compositions were measured at three sampling points (KUM, OTN, and ASO) from December 2013 to July 2021. The <sup>3</sup>He/<sup>4</sup>He values at the three sampling points remained stable in the range of 3–4 Ra throughout the observation period, suggesting that the supply of deep-seated gases to the aquifer was stable. The <sup>4</sup>He/<sup>20</sup>Ne values of KUM and OTN indicate that the supply of surface-source fluids to the aquifer decreased relative to that of deep-seated fluids at KUM and OTN. In contrast, in the ASO site, both the surface- and deep-seated fluids supplied to the aquifer were stable. The δD–δ<sup>18</sup>O relationship indicated the supply of deep-seated water to the KUM and OTN aquifers but not to the ASO aquifer. Nevertheless, the δD–δ<sup>18</sup>O relationship remained stable throughout the observation period, suggesting that the supply of deep-seated water to the three stations was stable. The Li/Cl and 1/Cl relationships for the three sampling points were plotted within a narrow range throughout the observation period, suggesting that the groundwater recharge was stable. Neither spikes nor step changes owing to the 2016 Kumamoto earthquake were observed in any of the data. These results indicate that the KUM and OTN aquifers are constantly supplied with deep fluids from the fluid-rich zone beneath the Kumamoto region, and that only deep-seated gas was supplied to the ASO aquifer. We also confirmed that these supply conditions were unaffected by the 2016 Kumamoto earthquake or the subsequent aftershock activity.</p>","PeriodicalId":12866,"journal":{"name":"Groundwater","volume":"62 5","pages":"702-713"},"PeriodicalIF":2.0000,"publicationDate":"2024-02-06","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://onlinelibrary.wiley.com/doi/epdf/10.1111/gwat.13394","citationCount":"0","resultStr":"{\"title\":\"Deep-Seated Fluids in Thermal Waters Before and After the 2016 Kumamoto Earthquakes\",\"authors\":\"Fumiaki Tsunomori, Noritoshi Morikawa, Masaaki Takahashi\",\"doi\":\"10.1111/gwat.13394\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p>Noble gases, oxygen-hydrogen isotope ratios, and ion compositions were measured at three sampling points (KUM, OTN, and ASO) from December 2013 to July 2021. The <sup>3</sup>He/<sup>4</sup>He values at the three sampling points remained stable in the range of 3–4 Ra throughout the observation period, suggesting that the supply of deep-seated gases to the aquifer was stable. The <sup>4</sup>He/<sup>20</sup>Ne values of KUM and OTN indicate that the supply of surface-source fluids to the aquifer decreased relative to that of deep-seated fluids at KUM and OTN. In contrast, in the ASO site, both the surface- and deep-seated fluids supplied to the aquifer were stable. The δD–δ<sup>18</sup>O relationship indicated the supply of deep-seated water to the KUM and OTN aquifers but not to the ASO aquifer. Nevertheless, the δD–δ<sup>18</sup>O relationship remained stable throughout the observation period, suggesting that the supply of deep-seated water to the three stations was stable. The Li/Cl and 1/Cl relationships for the three sampling points were plotted within a narrow range throughout the observation period, suggesting that the groundwater recharge was stable. Neither spikes nor step changes owing to the 2016 Kumamoto earthquake were observed in any of the data. These results indicate that the KUM and OTN aquifers are constantly supplied with deep fluids from the fluid-rich zone beneath the Kumamoto region, and that only deep-seated gas was supplied to the ASO aquifer. 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引用次数: 0
摘要
2013年12月至2021年7月,在三个取样点(KUM、OTN和ASO)测量了惰性气体、氧氢同位素比和离子组成。在整个观测期间,三个采样点的 3 He/4 He 值稳定在 3-4 Ra 范围内,表明含水层深层气体供应稳定。KUM 和 OTN 的 4 He/20 Ne 值表明,相对于 KUM 和 OTN 的深层流体,含水层的地表源流体供应量有所减少。与此相反,在 ASO 站点,向含水层供应的地表流体和深层流体都很稳定。δD-δ18 O 关系表明,KUM 和 OTN 含水层有深层水供应,但 ASO 含水层没有。不过,在整个观测期间,δD-δ18 O 关系保持稳定,表明三个观测站的深层水供应是稳定的。在整个观测期间,三个采样点的 Li/Cl 和 1/Cl 关系在较窄范围内变化,表明地下水补给稳定。所有数据中均未观察到因 2016 年熊本地震而产生的峰值或阶跃变化。这些结果表明,KUM 和 OTN 含水层不断得到来自熊本地区地下富流体区的深层流体补给,只有深层气体补给到 ASO 含水层。我们还证实,这些供应条件未受到 2016 年熊本地震或随后余震活动的影响。
Deep-Seated Fluids in Thermal Waters Before and After the 2016 Kumamoto Earthquakes
Noble gases, oxygen-hydrogen isotope ratios, and ion compositions were measured at three sampling points (KUM, OTN, and ASO) from December 2013 to July 2021. The 3He/4He values at the three sampling points remained stable in the range of 3–4 Ra throughout the observation period, suggesting that the supply of deep-seated gases to the aquifer was stable. The 4He/20Ne values of KUM and OTN indicate that the supply of surface-source fluids to the aquifer decreased relative to that of deep-seated fluids at KUM and OTN. In contrast, in the ASO site, both the surface- and deep-seated fluids supplied to the aquifer were stable. The δD–δ18O relationship indicated the supply of deep-seated water to the KUM and OTN aquifers but not to the ASO aquifer. Nevertheless, the δD–δ18O relationship remained stable throughout the observation period, suggesting that the supply of deep-seated water to the three stations was stable. The Li/Cl and 1/Cl relationships for the three sampling points were plotted within a narrow range throughout the observation period, suggesting that the groundwater recharge was stable. Neither spikes nor step changes owing to the 2016 Kumamoto earthquake were observed in any of the data. These results indicate that the KUM and OTN aquifers are constantly supplied with deep fluids from the fluid-rich zone beneath the Kumamoto region, and that only deep-seated gas was supplied to the ASO aquifer. We also confirmed that these supply conditions were unaffected by the 2016 Kumamoto earthquake or the subsequent aftershock activity.
期刊介绍:
Ground Water is the leading international journal focused exclusively on ground water. Since 1963, Ground Water has published a dynamic mix of papers on topics related to ground water including ground water flow and well hydraulics, hydrogeochemistry and contaminant hydrogeology, application of geophysics, groundwater management and policy, and history of ground water hydrology. This is the journal you can count on to bring you the practical applications in ground water hydrology.