西西伯利亚盆地秋明SG - 6深井附近永久冻土带的热历史

IF 3 3区 地球科学 Q2 GEOGRAPHY, PHYSICAL Permafrost and Periglacial Processes Pub Date : 2022-11-04 DOI:10.1002/ppp.2168
Y. Galushkin
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引用次数: 2

摘要

本文使用GALO盆地建模系统的ICE2020新软件包,对西西伯利亚盆地koltogore - urengoy地堑秋明SG‐6井沉积剖面的多年冻土热演化进行了建模。重建过去3.5 Ma的多年冻土演化被认为是盆地建模过程的最后阶段,其历史始于晚二叠世的大陆裂谷。该模型使用了盆地的真实沉积剖面和正确的岩石岩性组成。ICE2020一揽子计划的应用使评估沉积对永久冻土带形成的影响成为可能。计算结果表明,晚上新世-全新世期间的气候变化导致SG‐6井沉积剖面上部1500 m的岩石温度降低了15-20°C,剖面较深层的岩石温度降低了5-10°C。同时,用最近5万年和10万年的气候曲线计算的结果与用最近3.5 Ma的气候曲线模拟的结果明显不同。
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Thermal history of the permafrost zone in the vicinity of the deep Tyumen SG‐6 well, West Siberian Basin
A new software package, ICE2020 of the GALO basin modeling system, is used here to model the thermal evolution of permafrost zones in a sedimentary section of the Tyumen SG‐6 well in the Koltogor–Urengoy graben of the West Siberia Basin. Reconstruction of permafrost evolution during the last 3.5 Ma is considered as the final stage of the modeling procedure of the basin, the history of which began with continental rifting in the Late Permian. The modeling uses a real sedimentary section of the basin with the correct lithological composition of its rocks. Application of the ICE2020 package made it possible to evaluate the influence of sedimentation on the formation of permafrost zones. The calculations showed that climate variations during the Late Pliocene–Holocene led to a reduction in rock temperatures by 15–20°C in the upper 1,500 m of the sedimentary section of the SG‐6 well and by 5–10°C in the deeper layers of the section. At the same time, the results of calculations with a climate curve limited to the last 50,000 and 100,000 years differ markedly from simulations with a climate curve of the last 3.5 Ma.
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来源期刊
CiteScore
9.70
自引率
8.00%
发文量
43
审稿时长
>12 weeks
期刊介绍: Permafrost and Periglacial Processes is an international journal dedicated to the rapid publication of scientific and technical papers concerned with earth surface cryogenic processes, landforms and sediments present in a variety of (Sub) Arctic, Antarctic and High Mountain environments. It provides an efficient vehicle of communication amongst those with an interest in the cold, non-glacial geosciences. The focus is on (1) original research based on geomorphological, hydrological, sedimentological, geotechnical and engineering aspects of these areas and (2) original research carried out upon relict features where the objective has been to reconstruct the nature of the processes and/or palaeoenvironments which gave rise to these features, as opposed to purely stratigraphical considerations. The journal also publishes short communications, reviews, discussions and book reviews. The high scientific standard, interdisciplinary character and worldwide representation of PPP are maintained by regional editorial support and a rigorous refereeing system.
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