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Tourmaline in Geothermal Systems: An Example From Darajat, Indonesia

机译:地热系统中的电气石:以印度尼西亚达拉哈特为例

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The chemical compositions of two separate tourmaline populations (Stage 1 and Stage 3) from well DRJ-S1 at Darajat have been determined. This data, alongside petrologic observations, is used to improve our understanding of the evolution of the Darajat vapor-dominated geothermal system. Stage 1 tourmalines (replacing feldspar) have distinctly higher Fe/(Fe + Mg) and Na/(Na + Ca) ratios than Stage 3 tourmalines (formed in anhydrite veins). Mineral paragenesis and the high Fe content of the tourmalines suggest that Stage 1 formed in a higher temperature, fluid-dominated environment following the emplacement of subvolcanic intrusives. Ca-abundant Stage 3 tourmalines formed after descending steam condensates causing advanced argillic alteration began to neutralize. Continued anhydrite and calcite deposition (due to the heating of descending steam condensates) at shallow levels reduced porosity and permeability, impeding reservoir recharge, resulting in the current vapor-dominated system.
机译:在达拉哈特的DRJ-S1井中,确定了两个单独的电气石种群(第1阶段和第3阶段)的化学成分。该数据与岩石学观测资料一起用于增进我们对达拉雅特蒸气为主的地热系统演化的了解。第1阶段电气石(取代长石)的Fe /(Fe + Mg)和Na /(Na + Ca)比明显高于第3阶段电气石(在硬石膏脉中形成)。矿物共生和电气石的高铁含量表明,第1阶段是在次火山岩侵入体的作用下在较高温度,以流体为主的环境中形成的。下降的蒸汽凝结物导致高级的藻酸蚀变后形成的钙富集的第3阶段电气石开始被中和。浅层连续的硬石膏和方解石沉积(由于下降的蒸汽冷凝水的加热)降低了孔隙度和渗透率,阻碍了储层的补给,形成了目前以蒸汽为主的体系。

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