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Finite element analysis of heat transfer and mineralization in layered hydrothermal systems with upward throughflow

机译:向上通流的分层热液系统中传热和矿化的有限元分析

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We use the finite element method to solve the coupled problem between convective pore-fluid flow, heat transfer and mineralization in layered hydrothermal systems with upward throughflow. In particular, we present the improved rock alteration index (IRAI) concept for predicting the most probable precipitation and dissolution regions of gold (Au) minerals in the systems. To validate the numerical method used in the computation, analytical solutions to a benchmark problem have been derived. After the numerical method is validated, it is used to investigate the pattern of pore-fluid flow, the distribution of temperature and the mineralization pattern of gold minerals in a layered hydrothermal system with upward throughflow. The related numerical results have demonstrated that the present concept of IRAI is useful and applicable for predicting the most probable precipitation and dissolution regions of gold (Au) minerals in hydrothermal systems.
机译:我们使用有限元方法来解决具有向上通流的分层热液系统中对流孔隙流,传热和矿化之间的耦合问题。特别是,我们提出了改进的岩石蚀变指数(IRAI)概念,用于预测系统中金(Au)矿物最可能的沉淀和溶解区域。为了验证计算中使用的数值方法,已经得出了基准问题的解析解。数值方法验证后,用于研究向上贯通的层状热液系统中的孔隙流体流动模式,温度分布以及金矿的矿化模式。相关的数值结果表明,IRAI的当前概念可用于预测水热系统中金(Au)矿物最可能的沉淀和溶解区域。

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