Formation of permafrost and its influence on natural gas hydrate accumulation in Muli Region, Qinghai Province

被引:0
|
作者
Wang L. [1 ]
Zhu Y. [1 ]
Li N. [1 ]
Xu S. [2 ]
Tian Y. [2 ]
Liu N. [3 ]
Wang W. [1 ]
机构
[1] School of Civil Engineering and Architecture, Xi’an University of Technology, Xi’an
[2] Xi’an Research Institute Co. Ltd., China Coal Technology and Engineering Group Corp., Xi’an
[3] Shaanxi Key Laboratory of Geotechnical and Underground Space Engineering, Xi’an
关键词
gas hydrate; Muli Coalfield; permafrost; reservoir formation condition; simulation;
D O I
10.12363/issn.1001-1986.21.06.0347
中图分类号
学科分类号
摘要
The characteristics of the existing permafrost and natural gas hydrates were summarized and analyzed by studying the natural gas hydrate formation in Muli Region, Qinghai Province. On the basis of the evidence of the Quaternary climate survey and the available geological exploration data on the Qinghai-Tibet Plateau, FLAC3D was used to simulate and calculate the formation of permafrost. The calculation results show that the existing permafrost probably formed during the late Holocene Neoglacial(4 000-3 000 to 1 000 a BP), and a stable boundary at bottom of the permafrost layer formed after about 170 a of cooling at a depth of 122 m. Furthermore, the temperature gradient in the permafrost layer is 1.64℃/hm. The calculated results are quite consistent with the results obtained in the field exploration. In addition, on the basis of the formation of the permafrost layer, temperature and pressure curves of the formation of A/B class natural gas hydrates and the current status of natural gas hydrate accumulation, the reasons for the relatively scattered distribution of natural gas hydrates in Muli Region were analyzed. First, due to the geological structure, the hydrocarbon gas only migrated to the depth of around 140 m, and the natural hydrate underwent a phase change in situ. Second, it is possible that the hydrocarbon gas migrated to the shallower strata. However, as the repeated evolution of permafrost over many years, the gas hydrate entered the atmosphere in gaseous form after being decomposed dynamically. The related results can provide some ideas for the exploration and exploitation of the natural gas hydrate in Muli Region. © 2022 Meitiandizhi Yu Kantan/Coal Geology and Exploration. All rights reserved.
引用
收藏
页码:121 / 129
页数:8
相关论文
共 33 条
  • [1] ZHU Youhai, WANG Pingkang, PANG Shouji, Et al., A review of the resource and test production of natural gas hydrates in China[J], Energy Fuels, 35, 11, pp. 9137-9150, (2021)
  • [2] WANG Pingkang, ZHU Youhai, LU Zhenquan, Et al., Research progress of gas hydrates in the Qilian mountain permafrost,Qinghai, northwest China: Review[J], Scientia Sinica Physica,Mechanica & Astronomica, 49, 3, (2019)
  • [3] MAKOGON Y F, HOLDITCH S A, MAKOGON T Y., Natural gas–hydrates:A potential energy source for the 21st century[J], Journal of Petroleum Science and Engineering, 56, pp. 14-31, (2007)
  • [4] 天然气水合物新矿种获得国务院正式批准新闻发布会
  • [5] (2000)
  • [6] XU Xuezu, CHENG Guodong, YU Qihao, Research prospect and suggestions of gas hydrates in permafrost regions on the Qinghai-Tibet Plateau[J], Advance in Earth Sciences, 14, 2, pp. 201-204, (1999)
  • [7] CHEN Duofu, WANG Maochun, XIA Bin, Formation condition and distribution prediction of gas hydrate in Qinghai–Tibet Plateau permafrost[J], Chinese Journal of Geophysics, 48, 1, pp. 165-172, (2005)
  • [8] WU Qingbai, JIANG Guanli, PU Yibin, Et al., Relationship between permafrost and gas hydrates on Qinghai-Tibet Plateau[J], Geological Bulletin of China, 25, 1, pp. 29-33, (2006)
  • [9] ZHU Youhai, LIU Yaling, ZHANG Yongqin, Formation conditions of gas hydrates in permafrost of the Qilian mountains,northwest China[J], Geological Bulletin of China, 25, 1, pp. 58-63, (2006)
  • [10] ZHU Youhai, ZHANG Yongqin, WEN Huaijun, Et al., Gas hydrates in the Qilian mountain permafrost, Qinghai, northwest China[J], Acta Geologica Sinica, 83, 11, pp. 1762-1771, (2009)