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Mathematical algorithm development and parametric studies with the GEOFRAC three-dimensional stochastic model of natural rock fracture systems

机译:天然岩石裂缝系统的GEOFRAC三维随机模型的数学算法开发和参数研究

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This paper presents results from research conducted at MIT during 2010-2012 on modeling of natural rock fracture systems with the GEOFRAC three-dimensional stochastic model. Following a background summary of discrete fracture network models and a brief introduction of GEOFRAC, the paper provides a thorough description of the newly developed mathematical and computer algorithms for fracture intensity, aperture, and intersection representation, which have been implemented in MATLAB. The new methods optimize, in particular, the representation of fracture intensity in terms of cumulative fracture area per unit volume, P_(32), via the Poisson-Voronoi Tessellation of planes into polygonal fracture shapes. In addition, fracture apertures now can be represented probabilistically or deterministically whereas the newly implemented intersection algorithms allow for computing discrete pathways of interconnected fractures. In conclusion, results from a statistical parametric study, which was conducted with the enhanced GEOFRAC model and the new MATLAB-based Monte Carlo simulation program FRACSIM, demonstrate how fracture intensity, size, and orientations influence fracture connectivity.
机译:本文介绍了麻省理工学院在2010年至2012年间进行的有关利用GEOFRAC三维随机模型对天然岩石裂缝系统建模的研究结果。在对离散裂缝网络模型进行了背景摘要并简要介绍了GEOFRAC之后,本文对在MATLAB中实现的,新开发的关于裂缝强度,孔径和交点表示的数学和计算机算法进行了全面描述。新方法通过将平面折成多边形裂缝形状的泊松-沃罗诺伊曲面细分,特别优化了以每单位体积的累积裂缝面积P_(32)表示裂缝强度的方法。另外,现在可以概率性或确定性地表示裂缝孔,而新实施的相交算法允许计算互连裂缝的离散路径。总之,使用增强的GEOFRAC模型和基于MATLAB的新蒙特卡罗模拟程序FRACSIM进行的统计参数研究的结果证明了裂缝强度,尺寸和方向如何影响裂缝连通性。

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