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Fault-matrix interactions in nonwelded tuff of the Paintbrush Group at Yucca Mountain

机译:丝兰山画笔组的非焊接凝灰岩中的断层-基质相互作用

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摘要

To investigate the potential for fast flow through altered tuff of the nonwelded unit of the Paintbrush Group (PTn) at Yucca Mountain, Nevada, we carried out in situ field experiments using water released direetly into the matrix and along a minor subvertical normal fault at Alcove 4 in the Exploratory Studies Facility (ESF). During the experiments, changes in moisture content were monitored within the test bed, and a slot excavated below the test bed was visually inspected for seepage. Our field tests suggest that the dry porous PTn matrix is capable of attenuating episodic percolation fluxes in localized areas (such as around faults) where fast flow would be expected to dominate. Once wetted, the matrix is able to retain the moisture over a period of months. As saturation increases in the matrix, less water imbibes along the fault and more water travels farther along the fault. From this observation, we infer that a sequence of infiltration events separated by periods of up to a few months could convey water over increasing distances along the fault.
机译:为了研究通过内华达州尤卡山画笔组(PTn)的非焊接单元的凝灰岩快速流动的潜力,我们进行了现场实验,使用的水是直接释放到基质中,并沿着Alcove的一条较小的垂直下断层探索性研究设施(ESF)中的第4个。在实验过程中,监测测试床内的水分含量变化,并目视检查从测试床下方挖出的缝隙是否渗漏。我们的现场测试表明,干燥的多孔PTn基质能够减弱局部区域(如断层周围)中的快速渗透通量,而局部区域中快速流动将占主导地位。润湿后,基质能够在几个月内保留水分。随着基质中饱和度的增加,沿断层吸收的水越少,沿断层流动的水越多。从这个观察结果,我们推断出一系列渗透事件,相隔长达数月的时间,可以沿着断层增加距离输送水。

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