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首页> 外文期刊>Journal of structural geology >A graphical-algebraic method for analysing shear zone displacements from observations on arbitrarily oriented outcrop surfaces
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A graphical-algebraic method for analysing shear zone displacements from observations on arbitrarily oriented outcrop surfaces

机译:一种图形代数方法,可根据任意取向的露头表面的观测结果来分析剪切带的位移

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摘要

We present a practical graphical-algebraic method that enables one to achieve the true displacement and shape of deformed geological markers in fault or shear zones as observed on arbitrarily oriented outcrop surfaces. We use as our natural example deformed quartz veins that have been sheared across brittle-ductile faults in the Southern Alps of New Zealand. The technique is based on the assumption that simple shear has dominated the shear zone formation. For input data we require the strikes and dips of the outcrop surfaces, the offset markers, and the shear zones as well as the pitch of the simple shear vector in the plane of the shear zone. The paper develops a set of algebraic and graphical operations that allow one to convert photographs of faulted or sheared planar markers observed on an arbitrary outcrop surface into an equivalent view that is coincident with the movement (m) plane of the fault or shear zone. This view displays the true displacement of the offset marker and delineates its deformed shape as seen in a section that is parallel to the slip vector.
机译:我们提出了一种实用的图形代数方法,使人们能够在任意定向的露头表面上观测到断层或剪切带中变形地质标志的真实位移和形状。我们以自然的例子为例,在新西兰南阿尔卑斯山的坚韧韧性断裂中剪切了变形的石英脉。该技术基于以下假设:简单剪切主导了剪切带的形成。对于输入数据,我们需要露头表面的走向和倾角,偏移标记和剪切带,以及简单剪切矢量在剪切带平面中的间距。本文开发了一组代数和图形运算,使人们可以将在任意露头表面上观察到的断层或剪切平面标记的照片转换成与断层或剪切带的运动(m)平面重合的等效视图。该视图显示了偏移标记的真实位移,并描绘了其变形形状,如在与滑动矢量平行的截面中所见。

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