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首页> 外文期刊>Hydrogeology journal >Effect of advective mass transfer on field scale fluid and solute movement: Field and modeling studies at a waste disposal site in fractured rock at Oak Ridge National Laboratory, Tennessee, USA
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Effect of advective mass transfer on field scale fluid and solute movement: Field and modeling studies at a waste disposal site in fractured rock at Oak Ridge National Laboratory, Tennessee, USA

机译:对流传质对田间规模流体和溶质运移的影响:美国田纳西州橡树岭国家实验室的裂隙岩石废物处置场的田野和模型研究

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摘要

Advective mass transfer is a pore scale mass-transfer process that affects fluid and solute movement between pore domains such as fracture and matrix in a structured porous medium. Mechanistically similar to advection in the advection-dispersion of solutes in non-structured porous medium, it redistributes solutes by moving solute and solvent simultaneously between pore domains. While there is much research on diffusive mass transfer that is often referred to as matrix diffusion, there is a lack of information and study for advective mass transfer in the literature. The objective of this research is to study the effects of advective mass transfer on fluid and solute movement between pore domains. First, field hydraulic measurements at a waste disposal site in fractured rock at Oak Ridge National Laboratory (ORNL), Tennessee, USA, are used to calibrate a fracture-matrix, two-pore-domain groundwater flow model. Latin-hypercube sensitivity analysis suggests that the uncertainty of the calibrated model parameters is small and the calibrated flow model is nearly the optimal. Fracture spacing thus obtained is used to calculate diffusive mass transfer coefficients. The individual effects of advective and diffusive mass transfer on solute movement are then quantitatively evaluated. The calculations indicate that pore structure conceptual models may significantly affect the role of advective mass transfer in field and pore-scale mass transfer. In the particular ORNL field site and with a fracture-matrix pore structure model, contribution of advective mass transfer to solute mass movement is about three to eight orders of magnitude smaller than that of diffusive mass transfer.
机译:预测性质量传递是一种孔尺度的质量传递过程,它会影响结构化多孔介质中孔隙域(例如裂缝和基质)之间的流体和溶质运动。在非结构化多孔介质中,溶质的对流扩散在机理上与平流相似,它通过在孔域之间同时移动溶质和溶剂来重新分配溶质。尽管有很多关于扩散传质的研究,通常被称为基质扩散,但文献中缺乏对流传质的信息和研究。这项研究的目的是研究对流传质对孔隙域之间的流体和溶质运动的影响。首先,在美国田纳西州橡树岭国家实验室(ORNL)的裂隙岩石废物处置场进行现场水力测量,以校准裂隙矩阵,两孔域地下水流模型。拉丁超立方体敏感性分析表明,校准后的模型参数的不确定性很小,校准后的流量模型几乎是最优的。如此获得的断裂间距用于计算扩散传质系数。然后定量评估对流和扩散传质对溶质运动的影响。计算表明,孔隙结构概念模型可能会显着影响平流传质在田间和孔隙尺度传质中的作用。在特定的ORNL现场,并采用裂缝基质孔隙结构模型,对流传质对溶质传质的贡献比扩散传质小三到八个数量级。

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