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Conceptual evaluation of the potential role of fractures in unsaturated processes at Yucca Mountain

机译:丝兰山裂缝在非饱和过程中潜在作用的概念评价

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A wide array of field observations, in situ testing, and rock and water sampling (and subsequent analyses) within the unsaturated zone (UZ) of Yucca Mountain demonstrate the importance of fractures to flow and transport in the welded tuffs. The abundance of fractures and the spatial variability in their hydraulic properties, along with the heterogeneity within lithologic formations, make evaluation of unsaturated processes occurring within the potential repository horizon complex. Fracture mapping and field testing show that fractures are well connected, yet considerable variation is seen within and between units comprising the potential repository horizon with regard to fracture trace length, spacing, permeability, and capillarity. These variations have important implications for the distribution and movement of water and solutes through the unsaturated zone. Numerical models designed to assess such phenomena as unsaturated flow, transport, and coupled thermal-hydrological processes each require their own conceptual model for fracture networks, in order to identify the subset of all fractures that is relevant to the particular study. We evaluate several process-dependent conceptual models for fractures and identify the relevant fracture subsets related to these processes.
机译:尤卡山非饱和带(UZ)内的大量现场观察,原位测试以及岩石和水采样(以及后续分析)证明了裂缝在焊接凝灰岩中流动和传输的重要性。裂缝的丰富性及其水力性质的空间变异性以及岩性地层内的非均质性,使得对潜在储集层中发生的非饱和过程的评价变得复杂。裂缝测绘和现场测试表明,裂缝连接良好,但在裂缝痕迹的长度,间距,渗透率和毛细作用方面,在包含潜在储层层的单元内和单元之间仍可看到相当大的变化。这些变化对水和溶质通过不饱和区的分布和移动具有重要意义。设计用于评估不饱和流动,输运和热水文过程耦合等现象的数值模型,每个都需要有自己的裂缝网络概念模型,以便确定与特定研究相关的所有裂缝的子集。我们评估了几个与过程相关的裂缝概念模型,并确定了与这些过程相关的相关裂缝子集。

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