蒙古贝加尔湖地区地质和地球物理参数的统计分析

IF 1.8 4区 材料科学 Q2 MATERIALS SCIENCE, CHARACTERIZATION & TESTING Physical Mesomechanics Pub Date : 2023-10-12 DOI:10.1134/S1029959923050107
A. I. Miroshnichenko, K. G. Levi, V. A. Sankov, A. V. Lukhnev, O. F. Lukhneva
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引用次数: 0

摘要

基于描述地质地球物理和地质地貌过程的数值数据的多元统计分析,通过地球动力学区划,确定了蒙古-西伯利亚地区部分地区新构造的起源和形成机制。区域岩石圈的这些过程由一组11个地质和地球物理参数描述,使用聚类分析的层次方法将其分为三个主要组。第一组包括地震矩、活动断层密度、最近的水平应变率和深部热流的大小。第二组涉及地壳和外部活动层的厚度、最近的水平地壳速度和垂直新构造运动的幅度。第三组包括重力异常和岩石圈厚度。通过聚类分析(K-means方法)对参数进行空间分组,得到七个聚类,其空间位置和组成由地质历史、地质结构、该地区的地球动力学演化和最近的应变率决定。一些集群描述了所研究区域内大型刚性岩石圈块体,而其他集群则描述了大型活动断层系统。使用主成分法搜索对地质和地球物理参数值的分散贡献最大的潜在因素,该方法可以最大限度地减少因素的数量。对于新构造结构形态和起源不同的地区,确定了四个主要因素:(i)较高的水平压缩和拉伸应变,(ii)地幔异常的动力学效应,表现为隆起和隆起,(iii)岩石圈板块或大块边界内变薄岩石圈的活化,和(iv)地壳的主动剪切变形。在物理中力学的框架下,对描述蒙古-西伯利亚地区地质地球物理和地质地貌过程的数值数据的聚类和因子分析结果进行了解释。
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Statistical Analysis of Geological and Geophysical Parameters of the Baikal-Mongolia Region

The origins and formation mechanisms of neotectonic structures in a part of the Mongolian-Siberian region were identified by geodynamic zoning based on multivariate statistical analysis of numerical data that describe geological-geophysical and geological-geomorphological processes. These processes in the regional lithosphere were described by a set of 11 geological and geophysical parameters, divided into three main groups using the hierarchical method of cluster analysis. The first group includes the seismic moment, the density of active faults, the recent horizontal strain rates, and the magnitude of the deep heat flow. The second group involves the thicknesses of the earth’s crust and exogenously active layer, the recent horizontal crustal velocities, and the amplitudes of vertical neotectonic movements. The third group includes gravity anomalies and the lithospheric thickness. The spatial grouping of the parameters by cluster analysis (K-means method) yields seven clusters, whose spatial position and composition are determined by the geological history, geological structure, geodynamic evolution of the region, and the recent strain rates. Some clusters characterize large rigid lithospheric blocks, while other clusters describe large active fault systems in the studied region. The search for latent factors that make the greatest contribution to the dispersion of the geological and geophysical parameter values was carried out using the principal component method, which allows minimizing the number of factors. Four main factors were identified for areas that differ in the morphology and origin of neotectonic structures: (i) higher horizontal compressive and tensile strains, (ii) dynamic effect of mantle anomalies, manifested in uplifts and doming, (iii) activation of thinned lithosphere within the boundaries of lithospheric plates or large blocks, and (iv) active shear deformation of the earth’s crust. The results of clustering and factor analysis of numerical data describing geological-geophysical and geological-geomorphological processes within the Mongolian-Siberian region are interpreted in the framework of physical mesomechanics.

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来源期刊
Physical Mesomechanics
Physical Mesomechanics Materials Science-General Materials Science
CiteScore
3.50
自引率
18.80%
发文量
48
期刊介绍: The journal provides an international medium for the publication of theoretical and experimental studies and reviews related in the physical mesomechanics and also solid-state physics, mechanics, materials science, geodynamics, non-destructive testing and in a large number of other fields where the physical mesomechanics may be used extensively. Papers dealing with the processing, characterization, structure and physical properties and computational aspects of the mesomechanics of heterogeneous media, fracture mesomechanics, physical mesomechanics of materials, mesomechanics applications for geodynamics and tectonics, mesomechanics of smart materials and materials for electronics, non-destructive testing are viewed as suitable for publication.
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