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首页> 外文期刊>Journal of Geochemical Exploration: Journal of the Association of Exploration Geochemists >Numerical modeling of pore-fluid flow and heat transfer in the Fushan iron ore district, Hebei, China: Implications for hydrothermal mineralization
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Numerical modeling of pore-fluid flow and heat transfer in the Fushan iron ore district, Hebei, China: Implications for hydrothermal mineralization

机译:河北省浮山铁矿区孔隙流与传热的数值模拟:对热液成矿的启示

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摘要

This paper uses the numerical method to simulate pore-fluid flow and heat transfer associated with iron ore-forming processes in the Fushan iron ore district, Hebei, China. Since mineralization may last a long period of time in a hydrothermal system, it is commonly assumed, in geochemistry, that the solutions and minerals are in an equilibrium state or near an equilibrium state. The relationship between the equilibrium concentration of iron and temperature has been considered to determine the mineralization rate of iron ore. Using the FISH language in the FLAC code, the coupled pore-fluid flow, heat transfer and mineralization have been simulated first with a generic model, and then with an actual geological model of the Fushan iron ore district Since the equilibrium concentration of iron ion (Fe~(2+)) in magnetite (in the NaCl buffer) has been calculated using the TOUGHREACT software in geochemistry, it can be used to analyze the precipitation pattern of magnetite. The results of hydrothermal studies of coupled heat transfer and pore fluid flow with considering the mineralization rate can enhance our understanding of the ore formation processes in the Fushan district, and can be used directly or indirectly for mineral exploration.
机译:本文采用数值方法模拟了河北省浮山铁矿区与铁矿形成过程相关的孔隙流和传热。由于在热液系统中矿化作用可能持续很长时间,因此在地球化学中通常假定溶液和矿物质处于平衡状态或接近平衡状态。已经考虑铁的平衡浓度和温度之间的关系来确定铁矿石的矿化速率。使用FLAC代码中的FISH语言,首先使用通用模型模拟了耦合的孔隙液流动,传热和矿化作用,然后使用浮山铁矿区的实际地质模型进行了模拟,因为铁离子的平衡浓度为(利用地球化学中的TOUGHREACT软件计算了磁铁矿(在NaCl缓冲液中)中的Fe〜(2+)),可用于分析磁铁矿的沉淀模式。考虑矿化速率的耦合传热和孔隙流体流动的水热研究结果可以加深我们对福山区矿床成矿过程的了解,可以直接或间接地用于矿物勘探。

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