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Anisotropy quantification: the application of fractal geometry methods on tectonic fracture patterns of a Hercynian fault zone in NW Sardinia

机译:各向异性定量:分形几何方法在西北撒丁岛海西断裂带构造断裂模式中的应用

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摘要

Three different fractal geometry methods for pattern analysis are applied on a quartz-filled late-Hercynian fracture zone in NW Sardinia. Fragment-size distribution analysis and the box-counting method offer the possibility to (ⅰ) detect self-similarity of patterns and, therefore, argue for a specific pattern forming process, and (ⅱ) allow the quantification of the patterns and their comparison with other patterns from similar natural and artificial environments. The failure of these methods in analyzing pattern anisotropies can be overcome by the Cantor-dust method, direction-related and based on the analysis of 1-D distribution of material in relation to its 2-D orientation. With the aid of fractal-dimension orientation diagrams (DOD), a specific parameter, the azimuthal anisotropy of fractal dimension (AAD), can be determined. It quantifies the pattern anisotropy and, consequently, provides the basis for analyzing the pattern-forming processes. In addition, the Cantor-dust method shows the existence of two different pattern-forming processes.
机译:在西北撒丁岛的石英填充的晚海西期断裂带上应用了三种不同的分形几何方法进行模式分析。片段大小分布分析和盒计数方法提供了以下可能性:(ⅰ)检测图案的自相似性,因此主张特定的图案形成过程,并且(ⅱ)可以量化图案并与它们进行比较来自类似自然和人工环境的其他模式。这些方法在分析图案各向异性方面的失败可以通过与方向相关的Cantor-dust方法克服,并且可以基于材料相对于其二维方向的一维分布分析来克服。借助分形维数定向图(DOD),可以确定特定参数,即分形维数的方位各向异性(AAD)。它量化了图案的各向异性,从而为分析图案形成过程提供了基础。另外,Cantor-dust方法表明存在两种不同的图案形成过程。

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