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首页> 外文期刊>Journal of the Geological Society of India >Strain Estimation from Single forms of Distorted Fossils - A Computer Graphics and MATLAB Approach
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Strain Estimation from Single forms of Distorted Fossils - A Computer Graphics and MATLAB Approach

机译:变形化石单一形式的应变估算-计算机图形学和MATLAB方法

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Most of the existing methods of strain analysis can estimate strain in a single form of distorted brachiopod, or trilobite provided independent evidence, such as the association of the fossil with cleavage and/or stretching lineation is available for inferring the direction of maximum principal strain. This article proposes a simple computer graphics based method and its MATLAB code that determine the minimum amount of strain in a single distorted fossil form even if data for inferring the maximum principal strain direction are lacking. Our method is a rapid computer-graphics alternative to some of the existing analytical methods. In a distorted fossil form of original bilateral symmetry, the relative senses of angular shears along the hinge line and the median line are mutually opposite to each other. It follows, therefore, that the maximum principal strain direction lies within the acute angle between the hinge and the median lines in the plane of the fossil. Using this principle, our method performs several simulations such that each simulation retrodeforms the distorted fossil by assuming a particular orientation, lying within the acute angle between the hinge line and the median line, as the potential direction of the maximum principal strain. Each simulation of retrodeformation yields a potential strain ratio. The distribution of all the potential strain ratios, obtained by assuming different orientations as the potential directions of the maximum strain, is typically a parabola-like curve with a distinct vertex that corresponds to the minimum amount of strain in the distorted fossil. An entirely computer graphical approach is somewhat time-intensive because it involves a large number of retrodeformational simulations. We, therefore, give a MATLAB code, namely, the Minstrain, that rapidly retrodeforms the fossil and determines the minimum strain with precision.
机译:现有的大多数应变分析方法都可以估计畸形腕足动物或三叶虫的单一形式的应变,只要有独立的证据,例如化石与劈裂和/或伸展线的联系可用于推断最大主应变的方向。本文提出了一种基于计算机图形的简单方法及其MATLAB代码,即使缺少用于推断最大主应变方向的数据,该方法也可以确定单个变形化石形式的最小应变量。我们的方法是某些现有分析方法的快速计算机图形学替代方法。在原始双侧对称的变形化石形式中,沿铰链线和中线的角向剪切的相对方向彼此相反。因此,最大主应变方向位于化石平面中的铰链和中线之间的锐角之内。使用此原理,我们的方法执行了几次模拟,从而每次模拟都通过假设位于铰链线和中线之间的锐角内的特定方向作为最大主应变的潜在方向来对变形的化石进行变形。每次模拟反变形都会产生潜在的应变比。通过将不同的方向假定为最大应变的潜在方向而获得的所有潜在应变比的分布通常是抛物线状曲线,其顶点与变形化石中的最小应变量相对应。完全计算机图形化的方法在时间上有些耗时,因为它涉及大量的逆向变形模拟。因此,我们提供了一个MATLAB代码,即Minstrain,该代码可快速对化石进行变形并精确确定最小应变。

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