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Modes of raising northeastern Tibet probed by explosion seismology
Authors:Audrey GalvéAlfred Hirn  Jiang MeiJosep Gallart  Béatrice de VoogdJean-Claude Lépine  Jordi DiazWang Youxue  Qian Hui
Institution:a Laboratoire de Sismologie Expérimentale, Département de Sismologie UMR 7580 CNRS, Institut de Physique du Globe de Paris, 4 place Jussieu, 75005 Paris Cedex 05, France
b Institute of Mineral Deposits, Chinese Academy of Geological Sciences, Baiwanzhuang road, 100037 Beijing, PR China
c Institute of Earth Sciences Jauma Almera, Consejo Superior de Investigaciones Cientificas, calle Lluis Sole i Sabaris, 08028 Barcelona, Spain
d UMR Imagerie Géophysique, Université de Pau, 64000 Pau, France
Abstract:New wide-angle reflection and refraction seismic data provide constraints on the structure of the upper lithosphere, and test models of its evolution to raise the northeastern part of the Tibetan Plateau. Amplitudes observed for reflections from the crust-mantle boundary are sufficiently large to suggest that there is no significant partial melt in the deep crust. The data show an increase of the crustal thickness between terranes from north of the Kun Lun Fault into the Qang Tang of central Tibet, and a contrast among their intracrustal images and compositions. In the north, P and S velocities are consistent with a dominantly felsic composition and show that only the upper crust thickened. South of the Kun Lun Fault a thicker crust made of two layers could result from the superposition of the originally thin crust of the Bayan Har terrane on the lower part of the crust of the domain to the north, which upper crust it shoved and thickened. Different modes of crustal thickening, either by thickening of individual layers or superpositions and imbrication among them appear to work jointly to raise the topography.
Keywords:reflection  refraction  seismology  crust  attenuation  S-waves  P-waves  Qinghai-Xizang Plateau
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