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Finite element modeling of mineral diagenesis induced by hydrothermal circulation in oceanic crust

机译:海底水热循环诱导矿化成岩的有限元建模

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A 2D hydrothermal flow and geochemical speciation model is applied to simulate densitydependent flow, thermal energy transport and multi-component reactive mass transport through the oceanic crust. The modeling presented here is part of a study to assess the effect of water-rock interactions, including mineral precipitation and dissolution, on the evolution of flow systems and mineral diagenesis. The modeling approach is outlined, and a preliminary numerical simulation is completed showing anhydrite precipitation towards the bottom of a hydrothermal convective flow system where temperatures are between 150-300 °C.
机译:应用2D水热流动和地球化学物质模型来模拟通过海外壳模拟密度依赖性流动,热能输送和多组分反应性批量。这里提出的造型是评估水岩相互作用,包括矿物沉淀和溶解的效果的研究的一部分,对流动系统和矿物成岩作用的演变。概述了建模方法,并且完成了初步数值模拟,显示了朝向水热对流流动系统的底部的空气水质沉淀,其中温度在150-300℃之间。

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