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Development of 3-D Gravity-Magnetic Models of the Earth’s Crust of Azerbaijan and Adjacent Areas: an Overview

机译:阿塞拜疆和邻近地区地壳的3D重力磁性模型的开发:概述

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Azerbaijan is located in the Alpine Himalayan collisional zone and is characterized by its complex and variable geological structure. To study Azerbaijan’s deep structure, twelve main regional interpreting profiles were selected for comprehensive 3D combined gravity-magnetic modeling. The development of the initial physical-geological models (PGMs) was based on known surface geology, drilling data, previous seismic, magnetotelluric and thermal data analysis, examination of the richest petrophysical data, as well as quantitative and qualitative gravity/magnetic data examination. The PGMs thus reflect the key structural-formational specifics of Azerbaijan’s geological structure, beginning from the subsurface (hundreds of meters) up to the Moho discontinuity (40 - 60 km). The PGMs revealed common factors controlling ore- and hydrocarbon bearing formations, primarily the boundaries of tectonic blocks, masked faults, and buried uplifts of magmatic rocks. Many of these factors can be used to investigate long-term geodynamic activity at a depth. The article summarizes many years of investigation by exemplifying the most typical PGMs for the Greater and Lesser Caucasus, the Kura depression, and central and northern Azerbaijan.
机译:阿塞拜疆位于喜马拉雅高山碰撞带,其地质结构复杂多变。为了研究阿塞拜疆的深层结构,我们选择了12种主要的区域解释剖面进行全面的3D重力电磁综合建模。最初的物理地质模型(PGM)的开发基于已知的地面地质学,钻探数据,先前的地震,大地电磁和热学数据分析,最丰富的岩石物理数据的检查以及定量和定性的重力/磁数据检查。因此,PGM反映了阿塞拜疆地质结构的关键结构-构造细节,从地下(几百米)到Moho间断(40-60 km)。铂族金属揭示了控制矿石和烃类的地层的共同因素,主要是构造块体的边界,掩盖的断层和岩浆岩的隐伏隆起。这些因素中的许多因素都可用于调查某个深度的长期地球动力学活动。本文以高加索地区和小高加索地区,库拉洼地以及阿塞拜疆中部和北部的最典型PGM为例,总结了多年的研究。

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