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Multiple stable isotope fronts during non-isothermal fluid flow

机译:在非等温流体流动期间多个稳定同位素前线

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摘要

Stable isotope signatures of oxygen, hydrogen and other elements in minerals from hydrothermal veins and metasomatized host rocks are widely used to investigate fluid sources and paths. Previous theoretical studies mostly focused on analyzing stable isotope fronts developing during single-phase, isothermal fluid flow. In this study, numerical simulations were performed to assess how temperature changes, transport phenomena, kinetic vs. equilibrium isotope exchange, and isotopic source signals determine mineral oxygen isotopic compositions during fluid-rock interaction. The simulations focus on one-dimensional scenarios, with non-isothermal single-and two-phase fluid flow, and include the effects of quartz precipitation and dissolution.
机译:来自热热静脉和弥omatized主体岩石中氧气,氢气和其他元素的稳定同位素签名广泛用于研究流体来源和路径。 以前的理论研究主要集中于分析单相,等温流体流动期间的稳定同位素前线。 在该研究中,进行数值模拟以评估温度变化,运输现象,动力学与平衡同位素交换和同位素源信号在流体岩相互作用期间确定矿物氧同位素组合物。 模拟专注于一维情景,具有非等温单和两相流体流动,包括石英沉淀和溶解的影响。

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