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Review: The state-of-art of sparse channel models and their applicability to performance assessment of radioactive waste repositories in fractured crystalline formations

机译:综述:稀疏通道模型的最新技术及其在裂缝性晶体地层中放射性废物处置库性能评估中的适用性

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摘要

Laboratory and field experiments done on fractured rock show that flow and solute transport often occur along flow channels. ‘Sparse channels’ refers to the case where these channels are characterised by flow in long flow paths separated from each other by large spacings relative to the size of flow domain. A literature study is presented that brings together information useful to assess whether a sparse-channel network concept is an appropriate representation of the flow system in tight fractured rock of low transmissivity, such as that around a nuclear waste repository in deep crystalline rocks. A number of observations are made in this review. First, conventional fracture network models may lead to inaccurate results for flow and solute transport in tight fractured rocks. Secondly, a flow dimension of 1, as determined by the analysis of pressure data in well testing, may be indicative of channelised flow, but such interpretation is not unique or definitive. Thirdly, in sparse channels, the percolation may be more influenced by the fracture shape than the fracture size and orientation but further studies are needed. Fourthly, the migration of radionuclides from a waste canister in a repository to the biosphere may be strongly influenced by the type of model used (e.g. discrete fracture network, channel model). Fifthly, the determination of appropriateness of representing an in situ flow system by a sparse-channel network model needs parameters usually neglected in site characterisation, such as the density of channels or fracture intersections.
机译:在裂隙岩石上进行的实验室和现场实验表明,流动和溶质运移经常沿流动通道发生。 “稀疏通道”是指这些通道的特征是长流径中的流相对于流域的大小以较大的间距彼此隔开。提出了一项文献研究,该文献收集了有助于评估稀疏通道网络概念是否适合低透射率致密裂隙岩石中流动系统的适当表示的信息,例如深结晶岩石中核废料库周围的流动系统。在这篇评论中有很多观察。首先,传统的裂缝网络模型可能导致致密裂缝岩石中流动和溶质运移的结果不准确。其次,通过试井中的压力数据分析确定的流量为1,可能表示通道化流量,但这种解释不是唯一或确定的。第三,在稀疏通道中,渗流受裂缝形状的影响要大于裂缝的大小和方向,但还需要进一步研究。第四,放射性核素从处置库中的废物罐向生物圈的迁移可能受到所用模型类型(例如离散裂缝网络,通道模型)的强烈影响。第五,通过稀疏通道网络模型确定代表原位流动系统的适当性需要通常在现场表征中被忽略的参数,例如通道密度或裂缝相交处。

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