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Interaction of reactive fronts during transport in a homogeneous porous medium with initial small non-uniformity

机译:反应性前沿在均质多孔介质中运输过程中的相互作用,最初具有很小的不均匀性

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A reactive fluid circulating within a porous medium can dissolve minerals with which it is out of equilibrium and modify the porosity and permeability. The positive feedback between fluid transport and mineral dissolution causes complex reaction front morphologies such as fingers or wormholes. This study presents a numerical model to investigate reaction front instability, temporal aquifer porosity, and species concentration evolution during reactive transport in a homogeneous porous medium with two small, initially local non-uniformities. Simulation results indicate that a stable planar front develops for a small upstream pressure gradient while the growth of two non-uniformities becomes unstable for a large upstream pressure gradient. Moreover, the unstable reaction front may be either double- or single-finger in shape. Reaction front shape selection depends on the spacing of the two local non-uniformities and the upstream pressure gradients. A behavior diagram is constructed to identify a planar, single- or double-front morphology. The critical non-uniformities spacing at which a reaction front begins to merge into a single-finger decreases with increasing upstream pressure gradient.
机译:在多孔介质中循环的反应液可以溶解不平衡的矿物,并改变孔隙率和渗透率。流体传输和矿物溶解之间的正反馈会导致复杂的反应前沿形态,例如手指或虫洞。这项研究提供了一个数值模型,用于研究在具有两个小的局部初始不均匀性的均质多孔介质中进行反应性运输过程中反应前沿的不稳定性,时空含水层的孔隙度和物种浓度的变化。仿真结果表明,对于较小的上游压力梯度,会形成一个稳定的平面前沿,而对于较大的上游压力梯度,两种非均匀性的增长将变得不稳定。此外,不稳定的反应前沿可以是双指或单指的形状。反应前部形状的选择取决于两个局部不均匀性的间距和上游压力梯度。构造行为图以识别平面,单面或双面形态。反应前沿开始合并为单指的临界不均匀间距随着上游压力梯度的增加而减小。

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