Paleotemperature reconstructions based on vitrinite thermometry data (on the example of the Upper Paleozoic deposits of the Dnieper-Donets depression and the adjacent margins of the Donbas)

IF 0.6 Q4 GEOCHEMISTRY & GEOPHYSICS
A. Ivanova, V. Gavryltsev
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引用次数: 0

Abstract

The article is devoted to paleotemperature reconstructions based on the data on the reflectance of the vitrinite of coal organic matter in the Upper Paleozoic deposits of the Don-Dnieper trough (within the Dnieper-Donets depression and adjacent parts of the Donbas). It is builds on earlier work on reconstructing the paleogeothermal regime by establishing paleogeothermal gradients and amplitudes of vertical displacements of rock massifs. Paleogeothermal indicators are associated with the geodynamic setting of the subsoil, which determines the intensity and nature of the distribution of heat sources, geological development, and features of the tectonic structure of the region. Based on the results, a map of the distribution of paleotemperatures at a depth of 3 km was constructed. An analysis of the changes and patterns in the distribution of paleotemperatures makes it possible to reveal the role of volcanism, deep faults geodynamics, and lithospheric parameters in the thermal history of the region, as well as to evaluate its thermal field evolution. The presented map, along with the previously published maps of the paleogeothermal gradients and amplitudes of vertical displacements of rock massifs, can be used to demonstrate the features and patterns of the regional distribution of the indicated parameters. It could become a powerful tool in the study of the tectonic and geothermal history of the region.
基于镜质组测温资料的古地温重建(以第聂伯-顿涅茨凹陷及顿巴斯边缘上古生界沉积为例)
本文根据顿河-第聂伯河海槽(顿河-顿涅茨凹陷及其邻近地区)上古生界煤有机质镜质组反射率资料进行了古地温重建。它是建立在早期通过建立古地温梯度和岩体垂直位移振幅重建古地热制度的基础上的。古地热指标与底土的地球动力背景有关,决定了该地区热源分布的强度和性质、地质发育和构造构造特征。在此基础上,绘制了3 km深度古地温分布图。分析古地温的变化和分布规律,可以揭示火山作用、深断裂地球动力学和岩石圈参数在该地区热史中的作用,并评价其热场演化。所呈现的地图,连同先前发表的古地温梯度和岩体垂直位移幅值的地图,可以用来展示所示参数的区域分布的特征和模式。它可以成为研究该地区构造和地热历史的有力工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Geofizicheskiy Zhurnal-Geophysical Journal
Geofizicheskiy Zhurnal-Geophysical Journal GEOCHEMISTRY & GEOPHYSICS-
自引率
60.00%
发文量
50
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