青藏高原,那些高引论文大盘点
01
喜马拉雅-西藏造山带的地质演化
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
西藏高原在倾斜中逐步上升和生长
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
晚中新世以来亚洲季风的演化与喜马拉雅青藏高原的阶段性隆升
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
西藏东部地表变形与下地壳流动
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
碰撞后强过铝质花岗岩
格式:Sylvester, P.J., 1998. Post-collisional strongly peraluminous granites. Lithos 45, 29-44.
07
喜马拉雅构造可以用低粘度地壳通道的挤压和聚焦的地表剥蚀来解释
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
从碰撞后岩浆活动时空变化看西藏构造演化
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.
青藏高原及其周边地区简化地质图
09
青藏高原的地质演化
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.
西藏地区的地形阴影图
西藏及邻区构造图显示了主要构造和岩石单元的分布,大致划分为碰撞前的构造单元(~50 Ma以前)、早新生代(~20 Ma以前)、晚新生代(~20 Ma以后)
不同时期,印度板块与青藏高原的形成关系
10
基于全球定位系统测量的中国现今地壳形变
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)相对稳定欧亚大陆,绘制在亚洲地形图上
11
西藏南部中中新世东西伸展期埃达克侵入体的成因
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.