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A triple-continuum approach for modeling flow and transport processes in fractured rock

机译:一种三连续体方法,用于模拟裂隙岩石的流动和传输过程

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This paper presents a triple-continuum conceptual model for simulating flow and transport processes in fractured rock. Field data collected from the unsaturated zone of Yucca Mountain, a repository site of high-level nuclear waste, show a large number of small-scale fractures. The effect of these small fractures has not been considered in previous modeling investigations within the context of a continuum approach. A new triple-continuum model (consisting of matrix, small-fracture, and large-fracture continua) has been developed to investigate the effect of these small fractures. This paper derives the model formulation and discusses the basic triple-continuum behavior of flow and transport processes under different conditions, using both analytical solutions and numerical approaches. The simulation results from the site-scale model of the unsaturated zone of Yucca Mountain indicate that these small fractures may have an important effect on radionuclide transport within the mountain.
机译:本文提出了一个三连续体概念模型,用于模拟裂隙岩的流动和输运过程。从尤卡山非饱和带收集的现场数据表明,这里有大量的小规模裂缝。在连续方法的背景下,以前的模型研究未考虑这些小裂缝的影响。为了研究这些小裂缝的影响,已经开发了一种新的三重连续模型(由基质,小裂缝和大裂缝连续体组成)。本文推导了模型公式,并使用解析解和数值方法讨论了在不同条件下流动和传输过程的基本三连续体行为。丝兰山非饱和带场地尺度模型的模拟结果表明,这些小裂缝可能对山中放射性核素的运输产生重要影响。

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