台盖断裂的识别特征——构造物理方法在亚马尔半岛坦贝油气矿床研究中的应用结果

IF 0.8 Q4 GEOCHEMISTRY & GEOPHYSICS Geodynamics & Tectonophysics Pub Date : 2021-12-15 DOI:10.5800/gt-2021-12-4-0566
K. Seminsky, Yu.P. Burzunova, A. I. Miroshnichenko, S. Bornyakov, A. Nezhdanov, A. Ershov, A. Smirnov, I. Buddo, A. Seminsky, A. Cheremnykh, I. V. Kachinskas
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引用次数: 0

摘要

应用构造物理方法研究西西伯利亚最大的坦贝油气矿床(亚马尔北部)的构造,旨在识别台地环境中断裂的形成特征和表现规律。这一研究在当前油气工业由开发衰微的独特大型矿床向勘探开发复杂构造矿床过渡的阶段具有重要意义。构造物理方法在三个层次的研究中得到了一致的应用。在分离断裂的一般构造物理思想、断层内部结构和地层特征的背景下,初步考虑了台地盖层结构的规律趋势。然后,在地形起伏分析和光学模拟的基础上,对亚马尔北部进行了区域一级的大型断裂带网络识别,重建了其形成的三个主要阶段,并识别了应力状态特征,以及确定坦贝和塔西西部和北部三个地区坦贝矿床等高线的其他因素。最后,基于三维地震属性分析数据的构造物理解释和弹塑性模拟实验结果,对Tambey北部地区局部层面的断裂带及其流变分层单元的构造特征,以及与区域层面构造的共生关系进行了识别。研究表明,该沉积盖层的形成受邻近活动带的构造影响,为带块结构。它反映了基底的带块构造,但不以狭窄的主断面(一级断裂)为代表。盖层中的块体沿较宽的带接触,其内部构造对应于断裂的早期阶段,以密集的二级断裂网络为代表。断裂带具有非均质分段构造的特点,这种构造是由最初不规则的变形发育决定的,并因沉积盖层的流变分层作用而复杂化。相对脆弱的岩石(砂岩)中的断层段由长断层组成,而在更韧性的(粘土)品种中,这些断层段是小断层和裂缝的广泛集中。带块构造的样式及其形成的动力环境类型在不同地区可能是不同的。利用构造物理学方法对某些矿床的地质地球物理资料进行分析,可以确定沉积盖层油气聚集和运移的构造条件,这对选择有效的矿床开采方法至关重要。
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THE DISTINQUISHING FEATURES OF THE FAULTS IN THE PLATFORM COVER: RESULTS OF THE APPLICATION OF TECTONOPHYSICAL APPROACH TO THE STUDY OF THE TAMBEY HYDROCARBON DEPOSIT (YAMAL PENINSULAR)
The study was aimed to identify the features of the formation and regularities of manifestation of faults in the platform environment applying the tectonophysical approach to the study of the structure of the Tambey hydrocarbon deposit (northern Yamal), largest in the West Siberia. Such research is important in the oil and gas industry at the present stage of transition from the exploitation of declining unique and large deposits to exploration and exploitation of deposits of complex structure. The tectonophysical approach was applied consistently in three levels of research. Initial consideration was given to regular trends in the structure of the platform cover in the context of general tectonophysical ideas of disjunctive faults, their inner structure and formation features. Then, the identification of a network of large fault zones has been done at the regional level for the northern Yamal on the basis of the lineament analysis of the relief and optical modeling, three main stages of its formation have been reconstructed, and there have been identified the features of the state of stress, among other factors determining the Tambey deposit contours in three areas – western and northern Tambey and Tasyi. Finally, based on tectonophysical interpretation of 3D seismic attribute analysis data and elastoplastic modeling experiment results, for the northern Tambey area at the local level there were identified the faults zones, the features of their structures in rheologically stratified unit, and the paragenetic relationship with the regional-level structures. The study has shown that the structure of the sedimentary cover, whose formation is tectonically influenced by the adjacent mobile belts, is zone-block. It reflects the zone-block structure of the basement, though, in contrast, is not represented by narrow main-fault planes (1st-order faults). The blocks in the cover contact along rather wide zones, the inner structure of which corresponds to the early stages of faulting and is represented by a dense network of the 2nd-order fractures and faults. The fault zones are characterized by an inhomogeneous – segment – structure which is determined by an initially irregular development of deformations and complicated by rheological stratification of the sedimentary cover. Fault segments in relatively brittle rocks (sandstones) are composed of long faults whereas in more ductile (clayey) varieties these are wide parts of concentration of small faults and fractures. A style of the zone-block structure and the types of dynamic environments of its formation might be specific in different regions. The application of tectonophysical approach to the analysis of the geological-geophysical information, obtained for certain deposits, will make it possible to identify the structural conditions for hydrocarbon accumulation and migration in the sedimentary cover which is essential to choose an effective method of deposit exploitation.
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来源期刊
Geodynamics & Tectonophysics
Geodynamics & Tectonophysics GEOCHEMISTRY & GEOPHYSICS-
CiteScore
1.20
自引率
14.30%
发文量
95
审稿时长
24 weeks
期刊介绍: The purpose of the journal is facilitating awareness of the international scientific community of new data on geodynamics of continental lithosphere in a wide range of geolchronological data, as well as tectonophysics as an integral part of geodynamics, in which physico-mathematical and structural-geological concepts are applied to deal with topical problems of the evolution of structures and processes taking place simultaneously in the lithosphere. Complex geological and geophysical studies of the Earth tectonosphere have been significantly enhanced in the current decade across the world. As a result, a large number of publications are developed based on thorough analyses of paleo- and modern geodynamic processes with reference to results of properly substantiated physical experiments, field data and tectonophysical calculations. Comprehensive research of that type, followed by consolidation and generalization of research results and conclusions, conforms to the start-of-the-art of the Earth’s sciences.
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