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Geochemical modelling of the Soultz-sous-Forets Hot Fractured Rock system: comparison of two reservoirs at 3.8 and 5 km depth

机译:Soultz-sous-Forets热裂岩系统的地球化学模拟:深度为3.8和5 km的两个油藏的比较

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This study was carried out within the framework of the European Hot Fractured Rock project in Soultz-sous-Forets, France. Due to the very high salinity of the brine contained in the fractured granite and the limited kinetic data for high temperature, a new code called FRACHEM has been developed to simulate the coupled thermal-hydraulic and chemical processes of flow in the fractured system. The goal is to forecast the long term behaviour of the reservoir under exploitation. Among the minerals taken into account for this simulation (calcite, dolomite, quartz and pyrite), carbonate reactions predominate. Their reaction rates are higher than the quartz and pyrite reaction rates. The amount of quartz and pyrite precipitated is neglected. As a consequence of calcite dissolution, the porosity increases at the injection point with resulting permeability changes.
机译:这项研究是在法国Soultz-sous-Forets的欧洲热裂岩项目框架内进行的。由于裂缝花岗岩中所含盐水的盐度非常高,并且高温下的动力学数据有限,因此开发了一个名为FRACHEM的新代码来模拟裂缝系统中流动的热-液压和化学过程耦合。目的是预测正在开采的储层的长期行为。在模拟中考虑的矿物(方解石,白云石,石英和黄铁矿)中,碳酸盐反应占主导。它们的反应速率高于石英和黄铁矿的反应速率。沉淀的石英和黄铁矿的量可以忽略。方解石溶解的结果是,在注入点孔隙率增加,导致渗透率发生变化。

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