首页> 外文期刊>Journal of Contaminant Hydrology >Analysis of a mesoscale infiltration and water seepage test in unsaturated fractured rock: Spatial variabilities and discrete fracture patterns
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Analysis of a mesoscale infiltration and water seepage test in unsaturated fractured rock: Spatial variabilities and discrete fracture patterns

机译:非饱和裂隙岩石的中尺度渗透和渗水试验分析:空间变异和离散裂缝模式

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A mesoscale (21 m in flow distance) infiltration and seepage test was recently conducted in a deep, unsaturated fractured rock system at the crossover point of two underground tunnels. Water was released from a 3 m x 4 m infiltration plot on the floor of an alcove in the upper tunnel, and seepage was collected from the ceiling of a niche in the lower tunnel. Significant temporal and (particularly) spatial variabilities were observed in both measured infiltration and seepage rates. To analyze the test results, a three-dimensional unsaturated flow model was used. A column-based scheme was developed to capture heterogeneous hydraulic properties reflected by these spatial variabilities observed. Fracture permeability and van Genuchten a parameter [van Genuchten, M.T., 1980. A closed-form equation for predicting the hydraulic conductivity of unsaturated soils. Soil Sci. Soc. Am. J. 44, 892-898] were calibrated for each rock column in the upper and lower hydrogeologic units in the test bed. The calibrated fracture properties for the infiltration and seepage zone enabled a good match between simulated and measured (spatially varying) seepage rates. The numerical model was also able to capture the general trend of the highly transient seepage processes through a discrete fracture network. The calibrated properties and measured infiltration/seepage rates were further compared with mapped discrete fracture patterns at the top and bottom boundaries. The measured infiltration rates and calibrated fracture permeability of the upper unit were found to be partially controlled by the fracture patterns on the infiltration plot (as indicated by their positive correlations with fracture density). However, no correlation could be established between measured seepage rates and density of fractures mapped on the niche ceiling. This lack of correlation indicates the complexity of (preferential) unsaturated flow within the discrete fracture network. This also indicates that continuum-based modeling of unsaturated flow in fractured rock at mesoscale or a larger scale is not necessarily conditional explicitly on discrete fracture patterns.
机译:最近,在两个地下隧道的交叉点的深层,非饱和裂隙岩石系统中进行了中尺度(流动距离为21 m)渗透和渗流测试。从上部隧道内壁co的3 m x 4 m渗透区释放水,并从下部隧道壁iche的天花板收集渗流。在测得的入渗率和渗漏率中均观察到明显的时间和(尤其)空间变化。为了分析测试结果,使用了三维非饱和流动模型。开发了基于列的方案,以捕获由观察到的这些空间变异性反映的非均质水力特性。裂缝渗透率和van Genuchten参数[van Genuchten,M.T.,1980。一种用于预测非饱和土壤水力传导率的封闭式方程。土壤科学Soc。上午。 [J. 44,892-898]已针对测试床中上部和下部水文地质单元中的每个岩石柱进行了校准。渗透和渗流区的标定裂缝特性使得模拟渗流率和实测渗流率(空间变化)之间具有良好的匹配性。数值模型还能够通过离散裂缝网络捕获高瞬态渗流过程的总体趋势。将标定的性质和测得的入渗/渗流速率与顶部和底部边界处的映射离散裂缝模式进行了进一步比较。发现上部单元的测得的入渗速率和校准的裂缝渗透率部分受渗透图上的裂缝模式控制(如它们与裂缝密度的正相关关系所示)。但是,在测得的渗透率与壁ceiling天花板上的裂缝密度之间无法建立相关性。这种缺乏相关性表明离散裂缝网络内(优先)不饱和流的复杂性。这也表明,基于连续介质的中尺度或更大规模裂隙岩石中非饱和流的建模不一定明确地取决于离散的裂隙模式。

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