首页> 外文期刊>Journal of structural geology >Constraining the strain ellipsoid and deformation parameters using deformed single layers: A computational approach assuming pure shear and isotropic volume change
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Constraining the strain ellipsoid and deformation parameters using deformed single layers: A computational approach assuming pure shear and isotropic volume change

机译:使用变形的单层约束应变椭球和变形参数:假设纯剪切和各向同性体积变化的一种计算方法

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If the deformation history of individual layers in a deformed rock mass can be appropriately analysed and categorised then the surface of no elongation (snoe) and the surface of no infinitesimal elongation (snoie) may be identified. A computational approach to automatically identify the polar snoe and snoie is presented and tested on synthetic and natural examples. Additionally the equations that allow extraction of parameter values, which quantify the deformation, are derived here. Two fundamental assumptions are made: 1) the progressive deformation is pure shear and 2) the associated volume change is isotropic. The proposed method is tested using data generated from known deformation sequences and is found to work reasonably well. However, as is the case with most methods of analysis, suitable data with a wide range of orientations is required for reliable results.
机译:如果可以适当地分析和分类变形岩体中各个层的变形历史,则可以识别出没有伸长的表面(鼻子)和没有无限伸长的表面(鼻子)。提出了一种自动识别极地势头和鼻涕的计算方法,并在合成和自然实例中进行了测试。此外,此处还导出了允许提取参数值(量化变形)的方程式。做出两个基本假设:1)渐进变形是纯剪切,2)相关的体积变化是各向同性的。使用从已知变形序列生成的数据对提出的方法进行了测试,发现该方法工作合理。但是,与大多数分析方法一样,为了获得可靠的结果,需要具有广泛方向的合适数据。

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