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Method of modeling of faulting and fracturing in the earth

机译:地下断层与裂隙的建模方法

摘要

A computer implemented method for modeling of faulting and fracturing uses small scale rules to produce large-scale results. One part of the method is a user interface for inputting deformations, preexisting faults and fractures, and material rock properties. The second part of the software is the code that solves the motion of each point or node in the subsurface volume defined by the user interface. The model may be defined in one of three modes: an aerial mode, in which the model is 2-dimensional with the material and a substrate on a horizontal plane; a cross-sectional mode similar to the aerial mode except that the nodes are in a vertical cross section and gravity is included in the model; and a 3-D model that is an extension into a third dimension of the 2-D model and deformation may be applied to the bottom and four sides of the material region.;A modified over-relaxation approach, wherein the over-relaxation is concentrated in those nodes where the greatest movement occurs, is used to solve for the deformation. This significantly speeds up the computation time. The model is conditioned to increase the likelihood that the deformation pattern resulting from the simulation of the deformation will at least duplicate an observed large-scale deformation. As an aid to the simulation, an anticipate step provides a quick solution to the deformation without including the effects of faulting.
机译:一种计算机实现的断层和破裂建模方法,使用小规模规则来产生大规模结果。该方法的一部分是用于输入变形,预先存在的断层和裂缝以及材料岩石属性的用户界面。该软件的第二部分是解决用户界面所定义的地下体积中每个点或节点运动的代码。可以以以下三种模式之一来定义模型:空中模式,其中模型是二维的,材料和衬底在水平面上;类似于空中模式的横截面模式,不同之处在于节点处于垂直横截面并且重力包括在模型中;并且可以将3-D模型扩展到2-D模型的第三维度并且可以将变形应用于材料区域的底部和四个侧面。改进的过松弛方法,其中过松弛是集中在发生最大运动的那些节点上,用于解决变形。这大大加快了计算时间。调节模型的条件是增加由变形模拟产生的变形模式将至少复制观察到的大规模变形的可能性。作为模拟的辅助,预期步骤为变形提供了快速解决方案,而没有包括断层的影响。

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