01
喜馬拉雅-西藏造山帶的地質(zhì)演化
格式:Yin, A., Harrison, T.M., 2000. Geologic evolution of the Himalayan-Tibetan orogen. Annual Review of Earth and Planetary Sciences 28, 211-280.
02
西藏高原在傾斜中逐步上升和生長
格式:Tapponnier, P., Xu, Z.Q., Roger, F., Meyer, B., Arnaud, N., Wittlinger, G., Yang, J.S., 2001. Geology - Oblique stepwise rise and growth of the Tibet plateau. Science 294, 1671-1677.
03
晚中新世以來亞洲季風的演化與喜馬拉雅青藏高原的階段性隆升
格式:An, Z.S., Kutzbach, J.E., Prell, W.L., Porter, S.C., 2001. Evolution of Asian monsoons and phased uplift of the Himalayan Tibetan plateau since Late Miocene times. Nature 411, 62-66.
04
高原的隆升
格式:Harrison, T.M., Copeland, P., Kidd, W.S.F., Yin, A., 1992. RAISING TIBET. Science 255, 1663-1670.
05
西藏東部地表變形與下地殼流動
格式:Royden, L.H., Burchfiel, B.C., King, R.W., Wang, E., Chen, Z.L., Shen, F., Liu, Y.P., 1997. Surface deformation and lower crustal flow in eastern Tibet. Science 276, 788-790.
06
碰撞后強過鋁質(zhì)花崗巖
格式:Sylvester, P.J., 1998. Post-collisional strongly peraluminous granites. Lithos 45, 29-44.
07
喜馬拉雅構(gòu)造可以用低粘度地殼通道的擠壓和聚焦的地表剝蝕來解釋
格式:Beaumont, C., Jamieson, R.A., Nguyen, M.H., Lee, B., 2001. Himalayan tectonics explained by extrusion of a low-viscosity crustal channel coupled to focused surface denudation. Nature 414, 738-742.
08
從碰撞后巖漿活動時空變化看西藏構(gòu)造演化
格式:Chung, S.L., Chu, M.F., Zhang, Y.Q., Xie, Y.W., Lo, C.H., Lee, T.Y., Lan, C.Y., Li, X.H., Zhang, Q., Wang, Y.Z., 2005. Tibetan tectonic evolution inferred from spatial and temporal variations in post-collisional magmatism. Earth-Science Reviews 68, 173-196.
青藏高原及其周邊地區(qū)簡化地質(zhì)圖
09
青藏高原的地質(zhì)演化
格式:Royden, L.H., Burchfiel, B.C., van der Hilst, R.D., 2008. The geological evolution of the Tibetan plateau. Science 321, 1054-1058.
西藏地區(qū)的地形陰影圖
西藏及鄰區(qū)構(gòu)造圖顯示了主要構(gòu)造和巖石單元的分布,大致劃分為碰撞前的構(gòu)造單元(~50 Ma以前)、早新生代(~20 Ma以前)、晚新生代(~20 Ma以后)
不同時期,印度板塊與青藏高原的形成關系
10
基于全球定位系統(tǒng)測量的中國現(xiàn)今地殼形變
格式:Wang, Q., Zhang, P.Z., Freymueller, J.T., Bilham, R., Larson, K.M., Lai, X., You, X.Z., Niu, Z.J., Wu, J.C., Li, Y.X., Liu, J.N., Yang, Z.Q., Chen, Q.Z., 2001. Present-day crustal deformation in China constrained by global positioning system measurements. Science 294, 574-577.
GPS速度矢量(mm/年)相對穩(wěn)定歐亞大陸,繪制在亞洲地形圖上
11
西藏南部中中新世東西伸展期埃達克侵入體的成因
格式:Hou, Z.Q., Gao, Y.F., Qu, X.M., Rui, Z.Y., Mo, X.X., 2004. Origin of adakitic intrusives generated during mid-Miocene east-west extension in southern Tibet. Earth and Planetary Science Letters 220, 139-155.
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