Reconstruction of the Parameters of Shear Stresses during the Formation of Multirank Faults in the Western Baikal Region Based on Tectonophysical Interpretation of Lineaments

IF 1 4区 地球科学 Q4 GEOCHEMISTRY & GEOPHYSICS
A. D. Svecherevskiy, S. A. Ustinov, D. S. Lapaev, V. A. Petrov
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Abstract—The authors’ software made it possible to perform a detailed identification of lineaments at various scale levels for the region of the Obruchev fault system of the western Baikal region. The identified lineaments significantly complement the mapped framework of faults and are consistent with the strike of fault structures of the corresponding rank. Based on the analysis of the relative specific density of lineaments of the local scale level, reflecting en echelon megafractures of large faults, heterogeneous damage zones of regional structures were established, which were divided into relatively homogeneous segments. For each identified segment and each structure as a whole, using the developed software Lineament Stress Calculator, a reconstruction of shear stress parameters was carried out on the basis of P.L. Hancock’s model. It has been proved earlier that the main features of the Early Paleozoic stage of the region development during accretion of the Olkhon terrane to the southern margin of the Siberian Craton were accompanied by activation of right-lateral strike-slip displacements along the SW–NE accretionary sutures and active metamorphism processes. The results confirm that the main faults of the SW–NE strike, subparallel to the marginal suture of the Siberian Platform, formed at the early stage of their development as right-lateral strike-slips with orientation of the compression axis of ≈90°. Second-order faults of the NW–SE orientation are defined as left-lateral strike-slips and were probably formed at that time as antithetical shears in relation to the main structures, having received their development during further structural rearrangements of the region.

Abstract Image

基于构造物理解释的西贝加尔湖地区多层断裂形成剪应力参数重建
摘要/ abstract摘要:作者开发的软件可以对贝加尔湖西部奥布鲁切夫断裂系统进行不同尺度上的地形特征的详细识别。所识别的断层线与断层图的格架相辅相成,与相应级别断层的走向相一致。通过对局部尺度上反映大断裂成梯队巨型断裂的剖面相对比密度的分析,建立了区域构造的非均质损伤带,并将其划分为相对均质的分段。利用开发的软件“Lineament Stress Calculator”,对识别出的每一段和每一整体结构,基于P.L. Hancock模型进行剪应力参数重建。早古生代奥尔洪地体向西伯利亚克拉通南缘增生发育的主要特征是伴随着西南-东北向增生缝的右侧走滑活动和活跃的变质作用。结果表明,西南—北东向主要断裂在发育初期以压缩轴方向≈90°的右旋走滑形式形成,与西伯利亚地台边缘缝合线近平行。NW-SE向的二级断裂被定义为左侧走滑,可能形成于当时与主要构造相对立的剪切,在该地区进一步的构造重排中得到了发展。
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来源期刊
Izvestiya, Physics of the Solid Earth
Izvestiya, Physics of the Solid Earth 地学-地球化学与地球物理
CiteScore
1.60
自引率
30.00%
发文量
60
审稿时长
6-12 weeks
期刊介绍: Izvestiya, Physics of the Solid Earth is an international peer reviewed journal that publishes results of original theoretical and experimental research in relevant areas of the physics of the Earth''s interior and applied geophysics. The journal welcomes manuscripts from all countries in the English or Russian language.
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