Distribution, evolution and structural properties of Wushenqi paleo-uplift in Ordos Basin

被引:0
|
作者
Mao D. [1 ]
He D. [1 ]
Bao H. [2 ]
Wei L. [2 ]
Xu Y. [1 ]
Cheng X. [1 ]
Gou J. [1 ]
Wu S. [3 ]
机构
[1] School of Energy Resources, China University of Geosciences (Beijing), Beijing
[2] Research Institute of Exploration and Development, Changqing Oilfield Branch Company, PetroChina, Shaanxi, Xi'an
[3] Research Institute of Petroleum Exploration & Development, PetroChina, Beijing
关键词
Caledonian orogeny; Ordos Basin; Ordovician Majiagou Formation; tectonic evolution; unconformity; Wushenqi paleo-uplift;
D O I
10.11698/PED.20230112
中图分类号
学科分类号
摘要
This paper depicts the distribution of the Wushenqi palaeo-uplift in the Ordos Basin by using the latest drilling and seismic data, and analyzes the tectonic evolution of the paleo-uplift with the support of Bischke curve and balanced section. The compressional Wushenqi palaeo-uplift which developed in the Early Caledonian orogeny (Huaiyuan orogeny) is approximately a flat ellipse extending in S-N direction. Its long axis is about 194 km and short axis is about 55–94 km in nearly W-E direction. The denudation thickness and area of the Cambrian in the core are 170–196 m and 11 298 km2, respectively. It was mainly formed during the Huaiyuan orogeny according to the chronostratigraphic framework. It was in the embryonic stage in the Middle–Late Cambrian, denuded after developed obviously at the end of Late Cambrian. The paleo-uplift of the 3rd member of the Ordovician Majiagou Formation was reactivated and reduced in area. In the sedimentary period of the Ma4 Member–pre-Carboniferous, the paleo-uplift experienced non-uniform uplift and denudation. It entered the stable period of burial and preservation in the Carboniferous and later period. The Wushenqi paleouplift was formed on the weak area of the basement and tectonic belts, into an compressional structure with irregular morphology, under the control of the non-axial compression in the south and north and the stress transmitted by the uplift in the basin. The Wushenqi paleo-uplift has a controlling effect on the sedimentary reservoirs and hydrocarbon accumulation. © 2023 Science Press. All rights reserved.
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页码:755 / 766
页数:11
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共 36 条
  • [1] ZHAO Jingzhou, WANG Qinghua, SHI Baohong, Et al., Marine hydrocarbon enrichment rules and palaeouplift-controlling hydrocarbon theory for the Paleozoic Tarim craton basin, Oil & Gas Geology, 28, 6, pp. 703-712, (2007)
  • [2] YANG Shuai, WU Guanghui, ZHU Yongfeng, Et al., Key oil accumulation periods of ultra-deep fault-controlled oil reservoir in northern Tarim Basin, NW China, Petroleum Exploration and Development, 49, 2, pp. 249-261, (2022)
  • [3] NIE Haikuan, LI Pei, DANG Wei, Et al., Enrichment characteristics and exploration directions of deep shale gas of Ordovician-Silurian in the Sichuan Basin and its surrounding areas, China, Petroleum Exploration and Development, 49, 4, pp. 648-659, (2022)
  • [4] WEI Guoqi, XIE Zengye, YANG Yu, Et al., Formation conditions of Sinian-Cambrian large lithologic gas reservoirs in the north slope area of central Sichuan Basin, SW China, Petroleum Exploration and Development, 49, 5, pp. 835-846, (2022)
  • [5] YANG Yueming, WANG Wenzhi, WEN Long, Et al., Sedimentary evolution characteristics and large-scale natural gas accumulation pattern of microbial carbonate in the slope area of major paleouplift, the Sichuan Basin, Natural Gas Industry, 41, 3, pp. 38-47, (2021)
  • [6] WEI Guoqi, YANG Wei, DU Jinhu, Et al., Tectonic features of Gaoshiti-Moxi paleo-uplift and its controls on the formation of a giant gas field, Sichuan Basin, SW China, Petroleum Exploration and Development, 42, 3, pp. 257-265, (2015)
  • [7] ZHANG Yijie, DONG Dazhong, Correct understanding of geology and suitable application of exploration technologies jointly leading to discoveries: An example from the western Luliang Uplift in the Junggar Basin, Oil & Gas Geology, 28, 5, pp. 564-569, (2007)
  • [8] KUANG Jun, Palaeohighs and targets for petroleum exploration in Junggar Basin, Xinjiang Petroleum Geology, 26, 5, pp. 502-509, (2005)
  • [9] GAO Chonglong, JI Youliang, JIN Jun, Et al., Development model of sedimentary system and reservoir under valley-monadnock paleotopography during buried stage of paleouplift: Case study of 1<sup>st</sup> member of K<sub>1q</sub> in Shinan area, hinterland of Junggar Basin, Natural Gas Geoscience, 29, 8, pp. 1120-1137, (2018)
  • [10] CHEN Jiajun, HE Dengfa, SUN Fangyuan, Et al., Framework evolution of North Tarim paleo-uplift from the Late Ordovician to Middle Devonian, Oil & Gas Geology, 42, 2, pp. 285-298, (2021)