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Strain analysis from objects with a random distribution: A generalized center-to-center method

机译:来自具有随机分布的对象的应变分析:一种通用的中心到中心方法

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Existing methods of strain analysis such as the center-to-center method and the Fry method estimate strain from the spatial relationship between point objects in the deformed state. They assume a truncated Poisson distribution of point objects in the pre-deformed state. Significant deviations occur in nature and diffuse the central vacancy in a Fry plot, limiting the its effectiveness as a strain gauge. Therefore, a generalized center-to-center method is proposed to deal with point objects with the more general Poisson distribution, where the method outcomes do not depend on an analysis of a graphical central vacancy. This new method relies upon the probability mass function for the Poisson distribution, and adopts the maximum likelihood function method to solve for strain. The feasibility of the method is demonstrated by applying it to artificial data sets generated for known strains. Further analysis of these sets by use of the bootstrap method shows that the accuracy of the strain estimate has a strong tendency to increase either with point number or with the inclusion of more pre-deformation nearest neighbors. A poorly sorted, well packed, deformed conglomerate is analyzed, yielding strain estimate similar to the vector mean of the major axis directions of pebbles and the harmonic mean of their axial ratios from a shape-based strain determination method. These outcomes support the applicability of the new method to the analysis of deformed rocks with appropriate strain markers.
机译:现有的应变分析方法,例如中心到中心方法和Fry方法,是根据变形状态下的点对象之间的空间关系估算应变的。他们假定点对象在预变形状态下的截断的Poisson分布。自然界中会出现明显的偏差,并且会在Fry图中分散中心空位,从而限制了其作为应变仪的有效性。因此,提出了一种通用的中心到中心方法来处理具有更一般泊松分布的点对象,该方法的结果不依赖于图形中心空位的分析。该新方法依赖于泊松分布的概率质量函数,并采用最大似然函数方法求解应变。通过将该方法应用于为已知菌株生成的人工数据集,证明了该方法的可行性。通过使用自举法对这些集合进行进一步分析,结果表明,应变估计的准确性具有随点数或包含更多预变形最近邻而增加的强烈趋势。分析了一个排序不当,填充得很好,变形的砾岩,得出的变形估计与基于形状的变形确定方法的卵石主轴方向矢量平均值及其轴向比率的谐波平均值相似。这些结果支持了该新方法对具有适当应变标记的变形岩石分析的适用性。

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