Advanced Search

Indexed by SCI、CA、РЖ、PA、CSA、ZR、etc .

Volume 24 Issue 4
Aug 2013
Turn off MathJax
Article Contents
Zengbao Zhang, Chuanbo Shen, Chun Shao, Zhaoqian Liu. Tectonothermal Evolution of the Eastern Tibetan Plateau Foreland: Fission-Track Thermochronology of the Southern Dabashan Fold-Thrust Belt. Journal of Earth Science, 2013, 24(4): 479-490. doi: 10.1007/s12583-013-0344-z
Citation: Zengbao Zhang, Chuanbo Shen, Chun Shao, Zhaoqian Liu. Tectonothermal Evolution of the Eastern Tibetan Plateau Foreland: Fission-Track Thermochronology of the Southern Dabashan Fold-Thrust Belt. Journal of Earth Science, 2013, 24(4): 479-490. doi: 10.1007/s12583-013-0344-z

Tectonothermal Evolution of the Eastern Tibetan Plateau Foreland: Fission-Track Thermochronology of the Southern Dabashan Fold-Thrust Belt

doi: 10.1007/s12583-013-0344-z
Funds:

the National Natural Science Foundation of China 40902038

the PetroChina Innovation Foundation 2009D-5006-01-08

the Project of China Geological Survey 12120113094200

More Information
  • Corresponding author: Chuanbo Shen: cugshen@126.com
  • Received Date: 17 Sep 2012
  • Accepted Date: 23 Jan 2013
  • Publish Date: 01 Aug 2013
  • Apatite fission-track dating and thermal-history modeling were carried out on samples from the Dabashan (大巴山), a fold-thrust belt, northeast of the Sichuan (四川) Basin and east of the Tibetan Plateau. A first cooling event in the Late Cretaceous is followed by a prolonged period of thermal stability with exhumation rates of ≤0.025 mm/a, as determined from age vs. elevation relationships. The preservation of age vs. elevations relationships and the lack of distinct age changes across tectonic structures indicate that the Dabashan fold-thrust belt formed prior to the Late Cretaceous, consistent with the current view of Triassic-Early Cretaceous shortening. Relatively short mean track lengths (~12 μm) indicate that the samples remained in the partial annealing zone for a prolonged time. The knick points in the best-fitting temperature-time models suggest that the onset of late-stage accelerated cooling commenced at ≤11 Ma. Related exhumation rates are 0.3–0.2 mm/a assuming geothermal gradients of 20 and 30 ℃/km. We speculate that this late-stage event results from eastward growth of the Tibetan Plateau and overstepping of the Sichuan Basin, it is likely responsible for the youthful morphology of the Dabashan.

     

  • loading
  • Baker, C. E., Goldstein, R. H., 1990. Fluid Inclusion Technique for Determine Maximum Temperature in Calcite and Its Composition to the Vitrinite Reflectance Gethermometer. Geology, 18(10): 1003–1006, doi:10.1130/0091-7613(1990)018<1003:FITFDM>2.3.CO;2
    Clark, M. K., House, M. A., Royden, L. H., et al., 2005. Late Cenozoic Uplift of Southeastern Tibet. Geology, 33(6): 525–528, doi: 10.1130/G21265.1
    Crowley, K. D., Cameron, M., Schaefer, R. L., 1991. Experimental Studies of Annealing of Etched Fission Tracks in Fluorapatite. Geochimica et Cosmochimica Acta, 55(5): 1449–1465, doi: 10.1016/0016-7037(91)90320-5
    Dong, S. W., Hu, J. M., Shi, W., et al., 2006. Jurassic Superposed Folding and Jurassic Foreland in the Daba Mountain, Central China. Acta Geoscientica Sinica, 27(5): 403–410 (in Chinese with English Abstract) http://en.cnki.com.cn/Article_en/CJFDTOTAL-DQXB200605003.htm
    Dong, Y. P., Zha, X. F., Fu, M. Q., et al., 2008. Characteristics of the Dabashan Fold-Thrust Nappe Structure at the Southern Margin of the Qinling, China. Geological Bulletin of China, 27(9): 1494–1508 (in Chinese with English Abstract) http://en.cnki.com.cn/Article_en/CJFDTOTAL-ZQYD200809013.htm
    Enkelmann, E., Ratschbacher, L., Jonckheere, R., et al., 2006. Cenozoic Exhumation and Deformation of Northeastern Tibet and the Qinling: Is Tibetan Lower Crustal Flow Diverging around the Sichuan Basin? Geological Society of America Bulletin, 118(5/6): 651–671, doi:10.1130/B25805. 1
    Galbraith, R. F., 1981. On Statistical Models for Fission Track Counts. Mathematical Geology, 13(6): 471–488 doi: 10.1007/BF01034498
    Galbraith, R. F., 1990. The Radial Plot: Graphical Assessment of Spread in Ages. International Journal of Radiation Applications and Instrumentation. Part D. Nuclear Tracks Radiation Measurement, 17(3): 207–214 doi: 10.1016/1359-0189(90)90036-W
    Green, P. F., Duddy, I. R., Gleadow, A. J. W., et al., 1986. Thermal Annealing of Fission Tracks in Apatite: 1. A Qualitative Description. Chemical Geology (Isotope Geoscience Section), 59: 237–253, doi:10.1016/0168-9622(86) 90074-6
    Grimmer, J. C., Jonckheere, R., Enkelmann, E., et al., 2002. Cretaceous-Tertiary History of the Southern Tan-Lu Fault Zone: Apatite Fission Track and Structural Constraints from the Dabie Shan. Tectonophysics, 359(3–4): 225–253, doi: 10.1016/S0040-1951(02)00513-9
    Hacker, B. R., Ratschbacher, L., Webb, L., et al., 1995. What Brought Them up? Exhuming the Dabie Shan Ultrahigh-Pressure Rocks. Geology, 23(8): 743–746, doi:10. 1130/0091-7613(1995)023<0743:WBTUEO>2.3.CO;2
    He, J. K., Lu, H. F., Zhang, Q. L., et al., 1997. The Thrust Tectonics and Its Transpressive Geodynamics in Southern Dabashan Mountains. Geological Journal of China Universities, 3(4): 419–428 (in Chinese with English Abstract) http://en.cnki.com.cn/Article_en/CJFDTOTAL-GXDX199704009.htm
    Hu, J. M., Shi, W., Qu, H. J., et al., 2009. Mesozoic Deformation of Dabashan Curvilinear Structural Belt of Qinling Orogen. Earth Science Frontiers, 16(3): 49–68 (in Chinese with English Abstract)
    Hurford, A. J., Green, P. F., 1983. The Zeta Age Calibration of Fission Track Dating. Chemical Geology, 41(1): 285–317 http://www.onacademic.com/detail/journal_1000035461625910_7d1a.html
    Ketcham, R. A., 2005. Forward and Inverse Modeling of Low-Temperature Thermochronometry Data. Reviews in Mineralogy and Geochemistry, 58: 275–314, doi: 10.2138/rmg.2005.58.11
    Ketcham, R. A., Donelick, R. A., Carlson, W. D., 1999. Variability of Apatite Fission-Tack Annealing Kinetics: Ⅲ. Extrapolation to Geological Time Scales. American Mineralogist, 84(9): 1235–1255 http://ci.nii.ac.jp/naid/10030368097
    Ketcham, R. A., Donelick, R. A., Donelick, M. B., 2003. AFTSolve: A Program for Multi-Kinetic Modeling of Apatite Fission-Track Data. American Mineralogist, 88(5–6): 929 http://www.researchgate.net/profile/Richard_Ketcham/publication/228085660_AFTSolve_A_program_for_multi-kinetic_modeling_of_apatite_fission-track_data/links/0a85e532c3708bf94b000000
    Kirby, E., Reiners, P. W., Krol, M. A., et al., 2002. Late Cenozoic Evolution of the Eastern Margin of the Tibetan Plateau: Inferences from 40Ar/39Ar and (U-Th)/He Thermochronology. Tectonics, 21(1): 1–20, doi: 10.1029/2000TC001246
    Lai, Q. Z., Ding, L., Wang, H. W., et al., 2006. Constraining the Stepwise Migration of the Eastern Tibetan Plateau Margin by Apatite Fission Track Thermochronology. Science in China Series D: Earth Sciences, 50(2): 172–183
    Li, Z. W., Liu, S. G., Luo, Y. H., et al., 2007. Structural Style and Deformation Mechanism of Southern Dabashan Foreland Fold Thrust Belt in Central China. Frontiers of Earth Science in China, 1(2): 181–193, doi: 10.1007/s1707-007-0023-4
    Liu, S. G., Li, Z. W., Liu, S., et al., 2006. Formation and Evolution of Dabashan Foreland Basin and Fold-and-Thrust Belt, Sichuan, China. Geological Publishing House, Beijing. 1–223 (in Chinese with English Abstract) http://162.105.138.200/uhtbin/cgisirsi/x/0/0/5?searchdata1=^C2080982
    Ma, Y. S., Mu, C. L., Guo, T. L., et al., 2005. Sequence Stratigraphy and Reservoir Distribution of Feixianguang Formation in Northeast Sichuan Basin. J. Mineral. Petrol. , 25(4): 73–79 (in Chinese with English Abstract) http://en.cnki.com.cn/Article_en/CJFDTOTAL-KWYS200504011.htm
    Meng, Q. R., Zhang, G. W., 2000. Geologic Framework and Tectonic Evolution of the Qinling Orogen, Central China. Tectonophysics, 323(3–4): 183–196, doi: 10.1016/S0040-1951(00)00106-2
    Pei, Z. H., 2007. Tectonic Deformation Characteristics of the Southern Daba Tectonic Belt during Mesozoic and Cenozoic. Petroleum Geology & Experiment, 29(3): 269–294 (in Chinese with English Abstract) http://en.cnki.com.cn/Article_en/CJFDTOTAL-SYSD200703009.htm
    Ratschbacher, L., Franz, L., Enkelmann, E., et al., 2006. Sino-Korean-Yangtze Suture, Huwan Detachment, and Paleozoic-Tertiary Exhumation of (Ultra) High-Pressure Rocks along Tongbai-Xinxian-Dabie. Geological Society of America Bulletin, 403: 45–75, doi:10.1130/2006. 2403(03)
    Ratschbacher, L., Hacker, B. R., Calvert, A., et al., 2003. Tectonics of the Qinling (Central China): Tectonostratigraphy, Geochronology and Deformation History. Tectonophysics, 366(1–2): 1–53, doi: 10.1016/S0040-1951(03)0053-2
    Reiners, P. W., Zhou, Z., Ehlers, T. A., et al., 2003. Post-Orogenic Evolution of the Dabie Shan, Eastern China, from (U-Th)/He and Fission-Track Thermochronology. American Journal of Science, 303(6): 489–518, doi: 10.2475/ajs.303.6.489
    Shen, C. B., 2006. Mesozoic-Cenozoic Basin-Mountain System and Forming Process of Marine Petroleum Reservoir in Northeast Sichuan Basin: [Dissertation]. China University of Geosciences, Wuhan. 1–82 (in Chinese with English Abstract)
    Shen, C. B., Donelick, R. A., O'Sullivan, P. B., et al., 2012b. Provenance and Hinterland Exhumation from LA-ICP-MS Zircon U-Pb and Fission-Track Double Dating of Cretaceous Sediments in the Jianghan Basin, Yangtze Block, Central China. Sedimentary Geology, 281: 194–207, doi: 10.1016/j.sedgeo.2012.09.009
    Shen, C. B., Mei, L. F., Min, K., et al., 2012a. Multi-Method Dating of the Huarong Granitoids in the Middle Yangtze Craton and Implications for the Tectonic Evolution of Eastern China. Journal of Asian Earth Sciences, 52: 73–87, doi: 10.1016/j.jseaes.2012.02.013
    Shen, C. B., Mei, L. F., Peng, L., et al., 2006. Fission Track Data Evidence for the Mesozoic-Cenozoic Uplift of Bogda Mountain, Xinjiang of Northwest China. Chinese Journal of Geochemistry, 25(2): 143–151 doi: 10.1007/BF02872174
    Shen, C. B., Mei, L. F., Xu, S. H., 2009. Fission Track Dating of Mesozoic Sandstones and Its Tectonic Significance in the Eastern Sichuan Basin, China. Radiation Measure ments, 44(9–10): 945–949, doi: 10.1016/j.radmeas.2009.10.001
    Shen, C. B., Mei, L. F., Xu, Z. P., et al., 2007. Fission Track Thermochronology Evidence for Mesozoic-Cenozoic Uplifting of Daba Mountain, Central China. Acta Petroloica Sinica, 23(11): 2901–2910 (in Chinese with English Abstract) http://www.cnki.com.cn/Article/CJFDTotal-YSXB200711021.htm
    Shen, C. B., Peng, L., 2011. Fluid Flow Events in the Southern Dabashan Fold-Thrust Belt, Central China, Insight from Fluid Inclusion and Isotope Data in Calcite Veins. Petroleum Science and Technology, 29(17): 1778–1787, doi: 10.1080/10916466.2010.495968
    Shi, W., Zhang, Y. Q., Dong, S. W., et al., 2012. Intra-Continental Dabashan Orocline, Southwestern Qinling, Central China. Journal of Asian Earth Sciences, 46: 20–38, doi: 10.1016/j.jseaes.2011.10.005
    Tang, D. Q., Wang, L. J., Zeng, T., et al., 2008. Tectonic Evolvement Function to Oil and Gas Pools Reformation in Xuanhan-Daxian Area, Northeastern Sichuan Basin. Geoscience, 22(2): 230–239 (in Chinese with English Abstract) http://en.cnki.com.cn/Article_en/CJFDTOTAL-XDDZ200802009.htm
    Tapponnier, P., Xu, Z., Roger, F., et al., 2001. Oblique Stepwise Rise and Growth of the Tibet Plateau. Science, 294(5547): 1671–1677, doi: 10.1126/science.105978
    Wan, J. L., Wang, Y., Li, Q., et al., 2005. Apatite Fission Track Study of Taibai Mountain Uplift in the Mesozoic-Cenozoic. Nuclear Techniques, 28(9): 712–716 (in Chinese with English Abstract) http://www.researchgate.net/publication/295388800_Apatite_fission_track_study_of_Taibai_Mountain_uplift_in_the_Mesozoic-Cenozoic
    Webb, L. E., Hacker, B. R., Ratschbacher, L., et al., 1999. Thermochronologic Constraints on Deformation and Cooling History of High and Ultrahigh-Pressure Rocks in the Qinling-Dabie Orogen, Eastern China. Tectonics, 18(4): 621–638, doi: 10.1029/1999TC900012
    Yuan, W. M., Carter, A., Dong, J. Q., et al., 2006. Mesozoic-Tertiary Exhumation History of the Altai Mountains, Northern Xinjiang, China: New Constraints from Apatite Fission Track Data. Tectonophysics, 412(3–4): 183–193, doi: 10.1016/j.tecto.2005.09.007
    Yue, G. Y., 1998. Tectonic Characteristics and Tectonic Evolution of Dabashan Orogenic Belt and Its Foreland Basin. J. Mineral. Petrol. , 18(Suppl. ): 8–15 (in Chinese with English Abstract) http://en.cnki.com.cn/Article_en/CJFDTOTAL-KWYS8S1.001.htm
    Zhang, G. W., Zhang, B. R., Yuan, X. C., et al., 2001. Qinling Orogenic Belt and Continental Dynamics. Science Press, Beijing. 1–855 (in Chinese) http://www.researchgate.net/publication/284050475_Qinling_Orogenic_Belt_and_Continental_Geodynamics
    Zhang, Y. Q., Vergely, P., Mercier, J., 1995. Active Faulting in and along the Qinling Range (China) Inferred from SPOT Imagery Analysis and Extrusion Tectonics of South China. Tectonophysics, 243(1–2): 69–95, doi: 10.1016/0040-1951(94)00192-C
    Zheng, D. W., Zhang, P. Z., Wan, J. L., et al., 2006. Rapid Exhumation at ~8 Ma on the Liupan Shan Thrust Fault from Apatite Fission-Track Thermochronology: Implications for Growth of the Northeastern Tibetan Plateau Margin. Earth and Planetary Science Letters, 248(1–2): 198–208, doi: 10.1016/j.epsl.2006.05.023
  • 加载中

Catalog

    通讯作者: 陈斌, bchen63@163.com
    • 1. 

      沈阳化工大学材料科学与工程学院 沈阳 110142

    1. 本站搜索
    2. 百度学术搜索
    3. 万方数据库搜索
    4. CNKI搜索

    Figures(4)  / Tables(3)

    Article Metrics

    Article views(427) PDF downloads(45) Cited by()
    Proportional views
    Related

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return