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Simulation of Radionuclide Transport through Unsaturated, Fractured Rock: Application to Yucca Mountain, Nevada

机译:放射性核素通过不饱和破碎岩石传输的模拟:在内华达州尤卡山的应用

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This paper describes the numerical methods developed to simulate the transport of radionuclides through the unsaturated, fractured rock below the proposed repository at the Yucca Mountain. Regardless of the disposition of the Yucca Mountain License Application, this method has general applicability for modeling contaminant transport through deep vadose zones. Using a dual-permeability solution for fluid flow as a basis, the transport model represents contaminant transport with a cell-based particle-tracking technique in which particles move from cell to cell in the three-dimensional large-scale grid of two overlapping continua. Particle movement between cells, and the residence time within a cell, is computed probabilistically based on transfer functions using numerical solutions of the transport equations for an idealized fracture-matrix system. Using this approach, the following transport phenomena are simulated: advection through fracture and matrix con-ti nua, including between these continua,dispersion, sorpti on of dissolved radionuclides to the matrix conti nuum, and within the fault zones, and molecular diffusion between the fractures and matrix. In additi on to providing a realistic representati on of the relevant processes, this methodhas the virtue of computational efficiency. After describing the numerical method, this paper presents sensitivity analyses for radionuclide transport travel time distributi ons from the proposed repository to the water table through the unsaturated zonefor the Yucca Mountain system.
机译:本文描述了为模拟放射性核素通过拟议的尤卡山储层下面的非饱和裂隙岩石的传输而开发的数值方法。无论Yucca Mountain License申请的处理方式如何,此方法都具有普遍适用性,可用于模拟通过深层渗流带的污染物迁移。以流体的双渗透率溶液为基础,传输模型使用基于细胞的粒子跟踪技术表示污染物的传输,其中粒子在两个重叠连续体的三维大规模网格中从一个细胞移动到另一个细胞。单元间的粒子运动以及单元内的停留时间是基于传递函数,使用理想断裂矩阵系统的输运方程的数值解,通过概率计算得出的。使用这种方法,模拟了以下运移现象:通过裂缝和基质连通的平流,包括这些连续性,分散,溶解的放射性核素到基质连续,在断层带内的吸附,以及在断裂带之间的分子扩散。骨折和基质。除了提供有关过程的现实表示之外,该方法还具有计算效率高的优点。在描述了数值方法之后,本文提出了从尤卡山系统通过非饱和带到拟建库到地下水位的放射性核素运输时间分布的敏感性分析。

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