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首页> 外文期刊>Physical review, E. Statistical physics, plasmas, fluids, and related interdisciplinary topics >Transport and retention in fractured rock: Consequences of a power-law distribution for fracture lengths
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Transport and retention in fractured rock: Consequences of a power-law distribution for fracture lengths

机译:裂隙岩中的运移和滞留:裂隙长度的幂律分布的后果

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A probabilistic model for the transport of a reacting species in fractured rock is presented. Particles are transported by advection through a series of n rock fractures, and also diffuse and react chemically in the surrounding porous medium. The fracture attributes are unobserved with predefined statistical distribution. The time of arrival t(phi) of a given fraction phi of an initial solute pulse, a key quantity used in a variety of applications, is related to the statistics for fracture apertures and lengths. A classification scheme is developed for the large n asymptotics of t(phi). The expected value and variance of t(phi) are available explicitly if the aperture and length distribution have finite variance. The expected t(phi) is infinite, and its probability distribution is related to asymmetrical Levy distributions in the case of a power-law distribution for lengths. The most probable time of arrival is proposed as a robust alternative to the expected value. A scaling transition in the most probable t(phi) versus n is found as the power-law exponent changes. These results suggest that risks associated with migrating contaminants may be misrepresented by conventional stochastic analyses. [References: 16]
机译:提出了一种在裂隙岩中运移反应物种的概率模型。粒子通过平流传输通过一系列n个岩石裂缝,并且在周围的多孔介质中扩散并发生化学反应。预先定义的统计分布无法观察到断裂属性。初始溶质脉冲的给定分数phi的到达时间t(phi)是各种应用中的关键量,它与裂缝孔径和长度的统计量有关。针对t(phi)的大n个渐近性,开发了一种分类方案。如果孔径和长度分布具有有限的方差,则可以明确获得t(phi)的期望值和方差。期望的t(phi)是无限的,并且在长度为幂律分布的情况下,其概率分布与不对称的Levy分布有关。建议将最可能的到达时间作为预期值的可靠替代方案。发现随着幂律指数的变化,最可能的t(phi)对n的缩放过渡。这些结果表明,传统的随机分析可能会误解与污染物迁移相关的风险。 [参考:16]

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