首页> 外文期刊>Applied Geochemistry: Journal of the International Association of Geochemistry and Cosmochemistry >Development of thermodynamically-based models for simulation of hydrogeochemical processes coupled to channel flow processes in abandoned underground mines
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Development of thermodynamically-based models for simulation of hydrogeochemical processes coupled to channel flow processes in abandoned underground mines

机译:基于热力学的模型开发,用于模拟废弃地下矿山中的水文地球化学过程与通道流过程耦合

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摘要

Accurate modeling of changing geochemistry in mine water can be an important tool in post-mining site management. The Pollutant Sources and Sinks in Underground Mines (POSSUM) model and Pollutant Loadings Above Average Pyrite Influenced Geochemistry POSSUM (PLAYING POSSUM) model were developed using object-oriented programming techniques to simulate changing geochemistry in abandoned underground mines over time. The conceptual model was created to avoid significant simplifying assumptions that decrease the accuracy and defensibility of model solutions. POSSUM and PLAYING POSSUM solve for changes in flow rate and depth of flow using a finite difference hydrodynamics model then, subsequently, solve for geochemical changes at distinct points along the flow path. Geochemical changes are modeled based on a suite of 28 kinetically controlled mineral weathering reactions. Additional geochemical transformations due to reversible sorption, dissolution and precipitation of acid generating salts and mineral precipitation are also simulated using simplified expressions. Contaminant transport is simulated using a novel application of the Random-Walk method. By simulating hydrogeochemical changes with a physically and thermodynamically controlled model, the 'state of the art' in post-mining management can be advanced.
机译:矿井水中不断变化的地球化学变化的准确建模可能是采矿后现场管理的重要工具。使用面向对象的编程技术来模拟地下矿山随时间变化的地球化学特征,开发了地下矿山的污染物源和汇(POSSUM)模型以及高于平均硫铁矿影响的地球化学的污染物负荷(PLAYS POSSUM)模型。创建概念模型的目的是避免显着简化的假设,这些假设会降低模型解决方案的准确性和可辩护性。 POSSUM和PLAYING POSSUM使用有限差分流体动力学模型求解流速和流量深度的变化,然后求解沿流径不同点的地球化学变化。地球化学变化是根据一组28种动力学控制的矿物风化反应进行建模的。还使用简化表达式模拟了由于产酸盐的可逆吸附,溶解和沉淀以及矿物沉淀而引起的其他地球化学转变。使用随机行走方法的新型应用来模拟污染物的输送。通过使用物理和热力学控制模型模拟水文地球化学变化,可以提高采矿后管理的“最新技术”。

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