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    Volume 42 Issue 10
    Oct.  2017
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    Wang Mingming, Wu Jiansheng, 2017. Lithosphere Effective Elastic Thickness and Its Tectonic Implications in Taiwan Strait and Its Adjacent Regions. Earth Science, 42(10): 1707-1714. doi: 10.3799/dqkx.2017.524
    Citation: Wang Mingming, Wu Jiansheng, 2017. Lithosphere Effective Elastic Thickness and Its Tectonic Implications in Taiwan Strait and Its Adjacent Regions. Earth Science, 42(10): 1707-1714. doi: 10.3799/dqkx.2017.524

    Lithosphere Effective Elastic Thickness and Its Tectonic Implications in Taiwan Strait and Its Adjacent Regions

    doi: 10.3799/dqkx.2017.524
    • Received Date: 2017-04-23
    • Publish Date: 2017-10-18
    • Taiwan Strait and its adjacent regions are located in the tectonic interaction front of Eurasia plate and Philippine Sea plate, they have alternately or jointly undergone extrusion, shearing and stretching tectonic processes. The isostatic adjustment has a profound effect on the tectonic evolution of Taiwan region under the complex stress environment. In this paper, we calculated the lithosphere effective elastic thickness (Te) of Taiwan Strait and its adjacent regions by isostatic response function method, and eliminated the sediment effect by stripping method, then we attained the effective thickness changes along the profile across Taiwan Strait. The effective thickness changes and its tectonic significance were analyzed, combining inversion results of Moho depth and Curie depth. The results show that the lithosphere effective elastic thickness of Taiwan Strait and its adjacent regions range from 22 to 8 km. The continental lithosphere in eastern China shows thinning trend eastward by decreasing effective elastic thickness from west to east. The effective elastic thickness increasing eastward under Taiwan Island is likely to be associated with obduction extrusion of Philippine plate. A high correlation between effective elastic thickness and Curie depth reflects Te is controlled by lithosphere temperature structure.

       

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    • Bechtel, T.D., Forsyth, D.W., Sharpton, V.L., et al., 1990.Variations in Effective Elastic Thickness of the North American Lithosphere.Nature, 343(6259):636-638.doi: 10.1038/343636a0
      Calmant, S., Francheteau, J., Cazenave, A., 1990.Elastic Layer Thickening with Age of the Oceanic Lithosphere:A Tool for Prediction of the Age of Volcanoes or Oceanic Crust.Geophysical Journal International, 100(1):59-67.doi: 10.1111/j.1365-246X.1990.tb04567.x
      Cao, J.B., Zhou, Z.Y., Wu, N.Y., et al., 2005.Lithospheric Characteristics and Effective Elastic Thickness of Western Zengmu Basin, South China Sea:Constraits from Tectonic Modeling.Geotectonica et Metallogenia, 29(3):377-384 (in Chinese with English abstract). http://www.sciencedirect.com/science/article/pii/S136791201730189X
      Chen, X.X., Lin, S., Li, Z.N., et al., 2005.Preliminary 1-D Model of Crust Velocity Structure in Fujian-Taiwan Region.Earthquake, 25(2):61-68 (in Chinese with English abstract).
      Chen, Y.J., Song, G.C., Chen, Z.N., 2006.River Erosion Model of Unisostasy Mountain.Chinese Science Bulletin, 51(7):865-869 (in Chinese).
      Contreras, R.E., Osses LA., 2010.Lithospheric Flexure Modelling Seaward of the Chile Trench:Implications for Oceanic Plate Weakening in the Trench Outer Rise Region.Geophysical Journal International, 182(1):97-112.doi: 10.1111/j.1365-246X.2010.04629.x
      Dong, X.F., Tang, Z.C., Chen, Z.D., et al., 2016.Geochemical Characteristics of the Basic and Magnesian Metamorphic Rocks in Longyou Area, Zhejiang Province and Their Tectonic Setting.Earth Science, 41(8):1322-1333 (in Chinese with English abstract). doi: 10.1007/BF02886130
      Dorman, L.M., Lewis, B.T., 1970.Experimental Isostasy:1.Theory of the Determination of the Earth's Isostatic Response to a Concentrated Load.Journal of Geophysical Research, 75(17):3357-3365. doi: 10.1029/JB075i017p03357
      Filmer, P.E., McNutt, M.K., Wolfe, C.J., 1993.Elastic Thickness of the Lithosphere in the Marquesas and Society Islands.Journal of Geophysical Research Atmospheres, 98(B11):19565-19577.doi:10.1029/ 93JB01720
      Forsyth, D.W., 1985.Subsurface Loading and Estimates of the Flexural Rigidity of Continental Lithosphere.Journal of Geophysical Research Atmospheres, 901(B14):12623-12632.doi: 10.1029/JB090iB14p12623
      Gong, W., Jiang, X.D., 2017.Thermal Evolution History and Its Genesis of the Ailao Shan-Red River Fault Zone in the Ailao Shan and Day Nui Con Voi Massif during Oligocene-Early Miocene.Earth Science, 42(2):223-239 (in Chinese with English abstract).
      Han, B., Zhang, X.H., Yang, J.Y., et al., 2014.Gravity Field in Taiwan Area and Its Relation with Moho Features.Marine Geology & Quaternary Geology, 34(5):67-72 (in Chinese with English abstract).
      He, J.K., Liu, J.Z., 2002.Lower-Crust Ductile Flow and Its Dynamical Relation with Syn-Collision Crustal Extension in Orogenic Belt.Chinese Journal of Geophysics, 45(4):483-496 (in Chinese with English abstract). http://manu39.magtech.com.cn/Geophy/EN/abstract/abstract3486.shtml
      Horng, Y.Y., Yih, H.Y., Lin, C.H., et al., 1995.Gravity Survey of Taiwan.Journal of Physics of the Earth, 43(6):685-696.doi: 10.4294/jpe1952.43.685
      Horng, Y.Y., Yih, H.Y., Wu, F.T., et al., 1998.Two-Dimensional Crustal Structures of Taiwan from Gravity Data.Tectonics, 17(1):104-111.doi: 10.1029/97TC02697
      Hu, M.Z., Li, J.C., Li, H., et al, .2015.The Lithosphere Effective Elastic Thickness and Its Tectonic Implications in the Northwestern Pacific.Chinese Journal of Geophysics, 58(2):542-555 (in Chinese with English abstract). http://manu39.magtech.com.cn/Geophy_en/EN/abstract/abstract11268.shtml
      Kalnins, K.M., Watts, A.B., 2009.Spatial Variations in Effective Elastic Thickness in the Western Pacific Ocean and Their Implications for Mesozoic Volcanism.Earth and Planetary Science Letters, 286(1-2):89-100.doi: 10.1016/j.epsl.2009.06.018
      Kao, H., Shen, S.J., Ma, K.F., 1998.Transition from Oblique Subduction to Collision:Earthquakes in the Southernmost Ryukyu Arc-Taiwan Region.Journal of Geophysical Research Solid Earth, 103(B4):7211-7229.doi: 10.1029/97JB03510
      Kudo, T., Yamaji, A., Furumoto, M., et al., 2001.Effective Elastic Thickness of Island Arc Lithosphere under Japan.Island Arc, 10(2):135-144. doi: 10.1046/j.1440-1738.2001.00314.x
      Liao, Q.L., Wang, Z.M., Wang, P.L., et al., 1988.Explosion Seismic Study of the Crustal Structure in Fuzhou-Quanzhou-Shantou Region.Acta Geophysica Sinica, 31(3):270-280 (in Chinese with English abstract). doi: 10.1007/BF02651023
      Liu, B.H., Wu, J.L., Xin, B.S., et al., 1998.Study on Topographic Compensation Model of the Okinawa Trough.Acta Oceanologica Sinica, 20(6):70-75 (in Chinese with English abstract). http://www.cqvip.com/QK/86790X/199902/3000790745.html
      Liu, S.F., Li, S.T., 1996.Formation Mechanism of Foreland Basin.Earth Science, 21(1):57-62 (in Chinese with English abstract).
      Liu, Z.H., Wang, Y.M., Wang, H.R., 2006.Characteristics and Evolutions of Geologic Structures in the Taiwan Strait Basin.Marine Geology & Quaternary Geology, 26(5):69-75 (in Chinese with English abstract).
      Mao, X.L., Wang, Q., Liu, S., et al., 2012.Effective Elastic Thickness and Mechanical Anisotropy of South China and Surrounding Regions.Tectonophysics, 550-553(4):47-56.doi: 10.1016/j.tecto.2012.05.019
      McNutt, M.K., Judge, A.V., 1990.The Superswell and Mantle Dynamics beneath the South Pacific.Science, 248(4958):969-975.doi: 10.1126/science.248.4958.969
      Wu, J.S., Wang, M.M., Cai, J.X., 2016.Lithosphere Effective Elastic Thickness Calculation and Analysis of East China Sea to Philippine Sea.Journal of Tongji University (Natural Science), 44(6):969-973 (in Chinese with English abstract).
      Wu, J.S., Zhang, X.Y., 2011.Model Analysis for Influence Factors of Isostatic Response Function Method.Journal of Tongji University (Natural Science), 39(11):1705-1709 (in Chinese with English abstract).
      Wu, Y., Chang, C., Zhao, L., et al., 2007.Seismic Tomography of Taiwan:Improved Constraints from a Dense Network of Strong-Motion Records.Journal of Geophysical Research Atmospheres, 112(B08312):582-596.doi: 10.1029/2007JB004983
      Xing, J.S., Yang, W.R., Xing, Z.Y., et al., 2007.Deep-Seated Structure Characteristics of Eastern and Its Relation with Metal Mineralization-Concentrated Region.Earth Science Frontiers, 14(3):114-130 (in Chinese with English abstract). doi: 10.1134/S0869591116050064
      Yang, T., Fu, R.S., Huang, J.S., 2012.On the Inversion of Effective Elastic Thickness of the Lithosphere with Moho Relief and Topography Data.Chinese Journal of Geophysics, 55(11):3671-3680 (in Chinese with English abstract).
      Yuan, B.Q., Yvette, H.D., Cheng, S.Y., et al., 2002a.The Estimation of the Effective Elastic Thickness of the Continental Lithosphere and Its Geological Significance.Acta Geoscientia Sinica, 23(3):269-272 (in Chinese with English abstract). http://www.oalib.com/paper/1559456
      Yuan, B.Q., Yvette, H.D., Wang, P., et al., 2002b.Effective Lithosphere Elastic Thickness of Southeastern Part of Arctic Ocean-Eurasia Continental-Pacific Ocean Geoscience Transect.Earth Science, 27(4):397-402 (in Chinese with English abstract). http://manu39.magtech.com.cn/Geophy_en/EN/abstract/abstract11268.shtml
      Yul, S.B., Chenl, H.Y., 1994.Global Positioning System Measurements of Crustal Deformation in the Taiwan Arc-Continent Collision Zone.Terrestrial Atmospheric & Oceanic Sciences, 5(S1-2):55-64.
      Zeng, Z.X., Wu, D.B., Wang, J., et al., 2013.Short-Term and Medium-Term Prediction and Rheo-Tectonic Analysis for Nantou Earthquake (Ms 6.7).Earth Science Frontiers, 20(6):162-171 (in Chinese with English abstract).
      Zhang, D., 2006.Wuyi-Taiwan Corridor Mineralization, Deep Process and Resource Potential.Geological Publishing House, Beijing (in Chinese).
      Zhao, L.H., Jiang, X.D., Jin, Y., et al., 2004.Effective Elastic Thickness of Continental Lithosphere in Western China.Earth Science, 29(2):183-190 (in Chinese with English abstract).
      Zhao, L.H., Jin, X.L., Gao, J.Y., et al., 2010.The Effective Elastic Thickness of Lithosphere in the Mid-West Pacific and Its Geological Significance.Earth Science, 35(4):637-644 (in Chinese with English abstract).
      曹洁冰, 周祖翼, 吴能友, 等, 2005.曾母盆地西部岩石圈特性与有效弹性厚度:来自构造模拟的约束.大地构造与成矿学, 29(3): 377-384. http://www.cnki.com.cn/Article/CJFDTOTAL-DGYK200503014.htm
      陈祥熊, 林树, 李祖宁, 等, 2005.福建-台湾地区一维地壳速度结构的初始模型.地震, 25(2): 61-68. http://www.cnki.com.cn/Article/CJFDTOTAL-DIZN200502008.htm
      陈彦杰, 宋国城, 陈昭男, 2006.非均衡山脉的河流水力侵蚀模型.科学通报, 51(7): 865-869. http://www.cnki.com.cn/Article/CJFDTOTAL-KXTB200607018.htm
      董学发, 唐增才, 陈忠大, 等, 2016.浙江龙游地区基性及镁质变质岩的地球化学特征及其构造环境.地球科学, 41(8): 1322-1333. http://earth-science.net/WebPage/Article.aspx?id=3340
      宫伟, 姜效典, 2017.哀牢山-红河断裂带哀牢山-大象山段渐新世-早中新世热史演化及成因.地球科学, 42(2): 223-239. http://earth-science.net/WebPage/Article.aspx?id=3430
      韩波, 张训华, 杨金玉, 等, 2014.台湾地区重力场特征及莫霍面反演.海洋地质与第四纪地质, 34(5): 67-72. http://www.cnki.com.cn/Article/CJFDTOTAL-HYDZ201405010.htm
      何建坤, 刘金朝, 2002.下地壳流变与造山带同挤压期地壳伸展的动力学关系.地球物理学报, 45(4): 483-496. http://www.cnki.com.cn/Article/CJFDTOTAL-DQWX200204005.htm
      胡敏章, 李建成, 李辉, 等, 2015.西北太平洋岩石圈有效弹性厚度及其构造意义.地球物理学报, 58(2): 542-555. doi: 10.6038/cjg20150217
      廖其林, 王振明, 王屏路, 等, 1988.福州-泉州-汕头地区地壳结构的爆炸地震研究.地球物理学报, 31(3): 270-280. http://www.cnki.com.cn/Article/CJFDTOTAL-DQWX198803003.htm
      刘保华, 吴金龙, 辛柏森, 等, 1998.冲绳海槽海底地形的补偿模式研究.海洋学报, 20(6): 70-75. http://www.cnki.com.cn/Article/CJFDTOTAL-SEAC199806009.htm
      刘少峰, 李思田, 1996.前陆盆地形成的力学机制.地球科学, 21(1): 57-62. http://earth-science.net/WebPage/Article.aspx?id=342
      刘振湖, 王英民, 王海荣, 2006.台湾海峡盆地的地质构造特征及演化.海洋地质与第四纪地质, 26(5): 69-75. http://www.cnki.com.cn/Article/CJFDTOTAL-HYDZ200605012.htm
      吴健生, 王明明, 蔡家新, 2016.东海-菲律宾海剖面岩石层有效弹性厚度计算及分析.同济大学学报(自然科学版), 44(6): 969-973. http://www.cnki.com.cn/Article/CJFDTOTAL-TJDZ201606022.htm
      吴健生, 张向宇, 2011.均衡响应函数法影响因素的模型分析.同济大学学报(自然科学版), 39(11): 1705-1709. doi: 10.3969/j.issn.0253-374x.2011.11.025
      邢集善, 杨巍然, 邢作云, 等, 2007.中国东部深部构造特征及其与矿集区关系.地学前缘, 14(3): 114-130. http://www.cnki.com.cn/Article/CJFDTOTAL-DXQY200703014.htm
      杨亭, 傅容珊, 黄金水, 2012.利用Moho面起伏及地表地形数据反演岩石圈有效弹性厚度的莫霍地形导纳法(MDDF).地球物理学报, 55(11): 3671-3680. doi: 10.6038/j.issn.0001-5733.2012.11.014
      袁炳强, Yvette, H. D., 程顺有, 等, 2002a.大陆岩石圈有效弹性厚度的计算及其地质意义.地球学报, 23(3): 269-272. http://www.cnki.com.cn/Article/CJFDTOTAL-DQXB200203016.htm
      袁炳强, Yvette, H. D., 王平, 等, 2002b.北冰洋-欧亚大陆-太平洋地学断面东南段岩石圈有效弹性厚度.地球科学, 27(4): 397-402. http://earth-science.net/WebPage/Article.aspx?id=1137
      曾佐勋, 吴达兵, 王杰, 等, 2013.台湾南投地震(Ms 6.7) 短期预测、中期预测和流变构造分析.地学前缘, 20(6): 162-171. http://www.cnki.com.cn/Article/CJFDTOTAL-DXQY201306025.htm
      张达, 2006.武夷-台湾走廊带成矿作用、深部过程与资源潜力.北京:地质出版社.
      赵俐红, 姜效典, 金煜, 等, 2004.中国西部大陆岩石圈的有效弹性厚度研究.地球科学, 29(2): 183-190. http://earth-science.net/WebPage/Article.aspx?id=1346
      赵俐红, 金翔龙, 高金耀, 等, 2010.中西太平洋海山区的岩石圈有效弹性厚度及其地质意义.地球科学, 35(4): 637-644. http://earth-science.net/WebPage/Article.aspx?id=2006
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