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In-Situ Diffusion Experiment In Sparsely Fractured Granite

机译:稀疏裂缝花岗岩的原位扩散实验

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The in-situ diffusion experiment was conducted at AECL's Underground Research Laboratory (URL) to improve the understanding of diffusive solute transport in sparsely fractured or intact granitic rock (SFR). The experimental program used a comparative series of laboratory and in-situ field experiments to evaluate the ability of laboratory measurements to estimate in-situ rock properties and to explore issues surrounding the influence of stress relaxation, rock texture, porosity, pore geometry, and anisotropy on derived effective diffusion coefficients (De). In-situ experiments yielded iodide Debetween 1.4 * 10~(-13) and 1.1 * 10~(-12) m~2/s. Unlike laboratory results, the in-situ Dc estimates did not exhibit correlation with sample depth or varied stress regime. Laboratory-derived measurements of De, porosity and permeability were found to systematically increase for samples removed from greater depths and higher stress regimes. Laboratory-derived iodide Dc values consistently trended higher than in-situ values by a factor of 1 to 15, except on the shallowest 240-m Level (C| = 30 MPa) where differences were negligible. Laboratory-derived estimates of permeability were consistently higher than in-situ derived values by a factor of 2 to 100. This experimental program provides evidence that laboratory steady-state diffusion experiments are most likely to yield conservative values of De for simulation of diffusive mass transport in SFR.
机译:原位扩散实验在AECL的地下研究实验室(URL)进行,以改善对稀疏破裂或完整的花岗岩(SFR)的扩散溶质运输的理解。实验计划使用了对比较的实验室和原位现场实验,以评估实验室测量以估计原位岩石特性的能力,并探讨应力松弛,岩石质地,孔隙,孔隙几何和各向异性影响的问题在衍生的有效扩散系数(DE)上。原位实验产生碘化物脱象1.4 * 10〜(-13)和1.1 * 10〜(-12)m〜2 / s。与实验室结果不同,原位DC估计没有表现出与样品深度或变化的相关性的相关性。发现从更大深度和更高的应力制度中除去的样品,发现了DE,孔隙率和渗透性的实验室衍生测量。实验室衍生的碘化物DC值与原位值一致趋于1至15的趋势,除了最浅的240米(C | = 30MPa),差异可以忽略不计。实验室衍生的渗透性估计始终高于原位得出的值2至100。该实验计划提供了证据表明,实验室稳态扩散实验最有可能产生用于模拟扩散批量分运的DE的保守值在SFR中。

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