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首页> 外文期刊>Vadose Zone Journal >Coupled Processes of Fluid Flow, Solute Transport, and Geochemical Reactions in Reactive Barriers
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Coupled Processes of Fluid Flow, Solute Transport, and Geochemical Reactions in Reactive Barriers

机译:反应性障碍中流体流动,溶质运移和地球化学反应的耦合过程

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A complex pattern of coupling between fluid flow and mass transport develops when heterogeneous reactions occur. For instance, dissolution and precipitation reactions can change a porous medium's physical properties, such as pore geometry and thus permeability. These changes influence fluid flow, which in turn impacts the composition of dissolved constituents and the solid phases, and the rate and direction of advective transport. Two-dimensional modeling studies using TOUGHREACT were conducted to investigate the coupling between flow and transport developed as a consequence of differences in density, dissolution–precipitation, and medium heterogeneity. The model includes equilibrium reactions for aqueous species, kinetic reactions between the solid phases and aqueous constituents, and full coupling of porosity and permeability changes resulting from precipitation and dissolution reactions in porous media. In addition, a new permeability relationship is implemented in TOUGHREACT to examine the effects of geochemical reactions and density difference on plume migration in porous media. Generally, the evolutions in the concentrations of the aqueous phase are intimately related to the reaction-front dynamics. Plugging of the medium contributed to significant transients in patterns of flow and mass transport.
机译:当发生非均相反应时,就会形成流体流动与质量输运之间的复杂耦合方式 。例如,溶解 和沉淀反应可以改变多孔介质的物理 属性,例如孔的几何形状以及渗透性。这些 的变化会影响流体流动,进而影响溶解成分和固相的组成 以及对流传输的速率和方向。使用TOUGHREACT进行了二维建模 研究,研究了由于密度,溶解-沉淀差异 而产生的流动与传输之间的耦合 该模型包括水物种的平衡反应,固相和水成分之间的动力学反应,孔隙度的完全耦合多孔介质中的沉淀和溶解反应产生的 和渗透率变化。 此外,在TOUGHREACT中实现了新的渗透率关系 来检验地球化学反应 和密度差异对多孔介质中羽流运移的影响。通常, 水相浓度的变化与反应前动力学密切相关。介质的堵塞 导致流量和质量传输模式 的显着瞬变。

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  • 来源
    《Vadose Zone Journal 》 |2004年第3期| 867-29400| 共28534页
  • 作者单位

    Korea Institute of Water and Environment, Korea Water Resources Corporation, Daejon, Korea|Department of Environmental Science and Engineering, Kwangju Institute of Science and Technology, Gwangju, Korea;

    Department of Geological Sciences, The Ohio State University, Columbus, OH 43210;

    Earth Sciences Division, Lawrence Berkeley National Laboratory, Berkeley, CA 94720;

    Department of Environmental Science and Engineering, Kwangju Institute of Science and Technology, Gwangju, Korea;

    Korea Institute of Water and Environment, Korea Water Resources Corporation, Daejon, Korea|Department of Environmental Science and Engineering, Kwangju Institute of Science and Technology, Gwangju, Korea;

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