Terrestrial heat flow in Junggar Basin, Northwest China

被引:23
作者
Wang, SJ [1 ]
Hu, SB
Li, TJ
Wang, JY
Zhao, WZ
机构
[1] Chinese Acad Sci, Inst Geol & Geophys, Beijing 100029, Peoples R China
[2] CNPC, Res Inst Petr Explorat & Dev, Beijing 100083, Peoples R China
来源
CHINESE SCIENCE BULLETIN | 2000年 / 45卷 / 19期
关键词
geothermal gradient; thermal conductivity; terrestrial heat flow; Junggar Basin;
D O I
10.1007/BF02886273
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Based on temperature logs of 117 boreholes and thermal conductivity of 119 rock samples, the first group of 35 heat flow data in the Junggar Basin are presented. The thermal gradients vary between 11.6 and 26.5 degreesC/km, and the thermal conductivity changes from 0.17 to 3.6 W/mK. Heat flow ranges from 23.4 to 53.7 mW/m(2) with a mean of (42.3+/-7.7) mW/m2. The heat flow pattern shows that heat flow is higher in the uplifts and lower in the depressions. The factors affecting the heat flow and its distribution include basin type, basement structure, sediment thickness, radioactive heat generation, etc. The overall low present-day heat flow in the Junggar Basin reflected its tectonothermal evolution characterized by lithospheric thickening, thrust and fault at shallow crust as well as consequently quick subsidence during the Late Cenozoic.
引用
收藏
页码:1808 / 1813
页数:6
相关论文
共 50 条
  • [41] Triassic and Jurassic palaeoclimate development in the Junggar Basin, Xinjiang, Northwest China - A review and additional lithological data
    Ashraf A.R.
    Sun Y.
    Sun G.
    Uhl D.
    Mosbrugger V.
    Li J.
    Herrmann M.
    Palaeobiodiversity and Palaeoenvironments, 2010, 90 (3) : 187 - 201
  • [42] Crustal thickness and lithospheric thermal state beneath the Junggar Basin and adjacent Mountain Ranges, northwest China
    Gao, Guoming
    Hou, Jing
    Kang, Guofa
    Bai, Chunhua
    Wen, Limin
    Zhao, Hong
    Shi, Lan
    JOURNAL OF ASIAN EARTH SCIENCES, 2019, 184
  • [43] Anomalies of gas molecular and isotopic compositions of terrestrial mud volcanoes caused by post-genetic processes - A case from the mud volcanoes in the Junggar Basin, northwest China
    Wang, Yangyang
    Chen, Jianfa
    Shen, Weibing
    Gao, Xiaoqi
    Li, Sijia
    JOURNAL OF PETROLEUM SCIENCE AND ENGINEERING, 2021, 196
  • [44] A review of the Mesozoic turtles of the Junggar Basin (Xinjiang, Northwest China) and the paleobiogeography of Jurassic to Early Cretaceous Asian testudinates
    Rabi M.
    Joyce W.G.
    Wings O.
    Palaeobiodiversity and Palaeoenvironments, 2010, 90 (3) : 259 - 273
  • [45] Source and thermal maturity of crude oils in the Junggar Basin in northwest China determined from the concentration and distribution of diamondoids
    Jiang, Wenmin
    Li, Yun
    Xiong, Yongqiang
    ORGANIC GEOCHEMISTRY, 2019, 128 : 148 - 160
  • [46] Present-day geothermal regime in Tarim basin, northwest China
    Feng Chang-Ge
    Liu Shao-Wen
    Wang Liang-Shu
    Li Cheng
    CHINESE JOURNAL OF GEOPHYSICS-CHINESE EDITION, 2009, 52 (11): : 2752 - 2762
  • [47] Organic Geochemical Characteristics and Hydrocarbon Significance of the Permian System Around the Bogda Mountain, Junggar Basin, Northwest China
    Zhou, Jiaquan
    Li, Chao
    Song, Ziyi
    Zhang, Xinlei
    SUSTAINABILITY, 2025, 17 (01)
  • [48] Tectonostratigraphic evolution of the Carboniferous arc-related basin in the East Junggar Basin, northwest China: Insights into its link with the subduction process
    Yang, Xiao-Fa
    He, Deng-Fa
    Wang, Qing-Chen
    Tang, Yong
    GONDWANA RESEARCH, 2012, 22 (3-4) : 1030 - 1046
  • [49] Radioactive Heat Production and Terrestrial Heat Flow in the Xiong'an Area, North China
    Cui, Yue
    Zhu, Chuanqing
    Qiu, Nansheng
    Tang, Boning
    Guo, Sasa
    ENERGIES, 2019, 12 (24)
  • [50] Terrestrial heat flow and lithospheric thermal structure in the Chagan Depression of the Yingen-Ejinaqi Basin, north central China
    Zuo, Yinhui
    Jiang, Shu
    Wu, Shihu
    Xu, Wei
    Zhang, Jiong
    Feng, Renpeng
    Yang, Meihua
    Zhou, Yongshui
    Santosh, Madhava
    BASIN RESEARCH, 2020, 32 (06) : 1328 - 1346