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Seepage into drifts with mechanical degradation

机译:由于机械性能下降而渗入排水沟

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Seepage into drifts in unsaturated tuff is an important issue for the long-term performance of the proposed nuclear waste repository at Yucca Mountain, Nevada. Drifts in which waste packages will be emplaced are subject to degradation in the form of rockfall from the drift ceiling, induced by stress-relief, seismic, or thermal effects. The objective of this study is to calculate seepage rates, for various drift-degradation scenarios and for different values of percolation flux, in the Topopah Spring middle nonlithophysal (Tptpmn) and the Topopah Spring lower lithophysal (Tptpll) units at Yucca Mountain. Seepage calculations are conducted by (1) defining a heterogeneous drift-scale permeability model with field data, (2) selecting calibrated parameters associated with the Tptpmn and Tptpll units, and (3) simulating seepage, based on detailed degraded-drift profiles obtained from a separate rock mechanics engineering analysis. The simulation results indicate (1) that the seepage threshold (i.e., the percolation flux at which seepage first occurs) is not significantly changed by drift degradation and (2) the degradation-induced increase in seepage above the threshold is influenced probably more by the shape of the cavity created by rockfall than by rockfall volume.
机译:对于内华达州尤卡山拟建核废料处置库的长期性能而言,渗入不饱和凝灰岩中的漂移是一个重要问题。由于应力释放,地震或热效应引起的,将要放置废物包的漂移物会从顶棚的顶部以落石的形式退化。这项研究的目的是计算在尤卡山的Topopah春季中非岩性(Tptpmn)和Topopah春季下岩性(Tptpll)单元中,针对各种漂移-退化情况和不同渗透通量值的渗流率。渗流计算是通过(1)用现场数据定义非均质的漂移尺度渗透率模型,(2)选择与Tptpmn和Tptpll单位相关的校准参数,以及(3)基于从单独的岩石力学工程分析。仿真结果表明,(1)渗流阈值(即首次发生渗流的渗透通量)不会因漂移退化而发生显着变化,并且(2)退化诱发的渗流阈值以上的增加可能受到更大的影响。由落石而不是由落石体积产生的空腔形状。

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