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Isotopes Geochemistry: Tools For Geothermal Reservoir Characterization (Kamchatka Examples)

机译:同位素和地球化学:地热储层表征工具(堪察加示例)

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The thermal, hydrogeological, and chemical processes affecting Kamchatka geothermal reservoirs were studied by using isotope and geochemistry data: (1) The Geysers Valley hydrothermal reservoirs; (2) The Paratunsky low temperature reservoirs; (3) The North-Koryaksky hydrothermal system; (4) The Mutnovsky high temperature geothermal reservoir; (5) The Pauzhetsky geothermal reservoir. In most cases water isotope in combination with Cl- transient data are found to be useful tool to estimate reservoirs natural and disturbed by exploitation recharge conditions, isotopes of carbon-13 (in CO_2) data are pointed either active magmatic recharge took place, while SiO_2 and Na-K geothermometers shows opposite time transient trends (Paratunsky, Geysers Valley) suggest that it is necessary to use more complicated geochemical systems of water/mineral equilibria.
机译:通过使用同位素和地球化学数据研究影响堪察加地热储层的热,水文地质和化学过程:(1)喷泉谷热水储层; (2)Paratunsky低温储层; (3)North-Koryaksky水热系统; (4)Mutnovsky高温地热储层; (5)Pauzhetsky地热水库。在大多数情况下,水同位素与Cl-Transient数据结合使用的是有用的工具来估计天然储层,并且通过剥削充电条件干扰,碳-13(在CO_2)数据的同位素被指向有源岩浆补给,而SiO_2和Na-K地热测定仪显示相反的时间瞬态趋势(Paratunsky,Geysers Valley)表明有必要使用更复杂的地球化学系统的水/矿物质平衡系统。

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