使用MIU-5M装置测定岩相结构的方法

A. Zakharova, Yu. L. Voytekhovsky, A. Kompanchenko, Y. Neradovsky
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引用次数: 0

摘要

作者开发了一种确定岩石结构的统计方法。通过二元晶间接触的可能性,提出了一个数学上严格的岩相结构定义。岩相结构被定义为岩石组织的一个不变方面,由接触概率对称矩阵的正则对角形式代数表示,并由结构指标-2阶表面可视化。已经提出了一个一致的岩相结构命名法。早些时候,该方法在描述希比尼山脉的伊荷利岩和urtite以及科雷茨基群岛(白海)的角闪岩的结构时表现得很好。该方法的大规模应用受到在显微镜下计算岩相薄片中晶间接触概率的常规程序的限制。现代光学结构分析仪的问题是将同一各向异性矿物的不同部分分配给不同的矿物,并将矿物个体的分离块分配给不同个体。本文介绍了用国产MIU-5M装置用Rosival线性法扫描岩相薄片的经验。视觉控制和过程的最小自动化相结合,使我们能够实现结构类型的收敛,并通过手动处理岩相薄片图像获得结果。此外,还研究了薄截面,其结构类型因各种计数方法而异。研究表明,异基性岩成分的存在和矿物组成的特征(表生变化或具有类似光学性质的矿物的存在)会影响概率的统计。根据所研究岩石的粒度,给出了扫描步骤的选择建议。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Methodology for determination of petrographic structures using the MIU-5M device
The authors develop a statistical method for determining the structures of rocks. A mathematically rigorous definition of the petrographic structure through the probabilities of binary intergranular contacts is proposed. The petrographic structure is defined as an invariant aspect of rock organization algebraically expressed by the canonical diagonal form of symmetric matrix of contact probabilities and visualized by structural indicatrices - 2 order surfaces. A consistent nomenclature of petrographic structures has been proposed. Earlier the method showed itself well in describing the structures of ijolites and urtites of the Khibiny Mountains, as well as amphibolites of the islands of Keretsky Archipelago (the White Sea). Mass application of the method is restrained by the routine procedure of calculating the probabilities of intergranular contacts in petrographic thin sections under a microscope. The problem of modern optical structure analyzers is assignment different sections of the same anisotropic mineral to different minerals, and separation blocks of a mineral individual to different individuals. The paper describes the experience of using the domestic MIU-5M device for scanning petrographic thin sections by the linear method of Rosival. The combination of visual control and minimum automation of the process allows us to achieve convergence of the structural types with results obtained by manual processing of image of petrographic thin section. Additionally, thin sections have been studied, for which the structural types differ with various methods of counting. It has been revealed that the presence of poikilitic ingrowths and features of the mineral composition (the existence of hypergene changes or minerals with similar optical properties) affect the statistics of probabilities. Recommendations are given on the selection of the scanning step depending on the grain size in the studied rock.
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