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2篇 您的检索式:作者名="LELOUP P.H."
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1Ductile deformation within Upper Himalaya Crystalline Sequence and geological implications,in Nyalam area,Southern Tibet显示文摘The South Tibet Detachment System(STDS) is a flat normal fault that separates the Upper Himalaya Crystalline Sequence(UHCS) below from the Tethyan Sedimentary Sequence(TSS) above.Timing of deformations related to the STDS is critical to understand the mechanism and evolution of the Himalaya collision zone.The Nyalam detachment(ND)(~86°E) locates in the middle portion of STDS(81°-89°E).Dating of deformed leucocratic dykes that are most probably syntectonic at different depth beneath the ND,allow us to constrain the timing of deformation.(1) Dyke T11N37 located ~3500 m structurally below the ND emplaced at 27.4± 0.2 Ma;(2) Dyke T11N32 located ~1400 m structurally below the ND emplaced at 22.0±0.3 Ma;(3) T11N25 located within the top to the north STD shear zone,~150 m structurally below the ND,emplaced at 17.1±0.2 Ma.Combining ND footwall cooling history and T11N25 deformation temperature,we indicate a probable onset of top to the north deformation at ~16 Ma at this location.These results show an upward younging of the probable timing of onset of the deformation at different structural distance below the ND.We then propose a new model for deformation migration below the ND with deformation starting by pure shear deformation at depth prior to ~27.5 Ma that migrates upward at a rate of ~ 0.3 mm/a until ~18 Ma when deformation switches to top to the north shearing in the South Tibet Detachment shear zone(STDsz).As deformation on the ND stops at 14-13 Ma this would imply that significant top to the North motion would be limited to less than 5 Ma and would jeopardize the importance of lower channel flow.LIU XiaoBing LIU XiaoHan LELOUP P.H. MAHEO G. PAQUETTE J.L. ZHANG XinGang ZHOU XueJun 2012Chinese Science Bulletin2012,57,26:14
2藏南聂拉木高喜马拉雅结晶岩系上部韧性变形年代学及地质意义显示文摘藏南拆离断层系(STDS)为低角度正断层,其上盘为特提斯喜马拉雅沉积岩系,下盘为高喜马拉雅结晶岩系.厘定与STDS有关的变形时限,对深入理解喜马拉雅造山带的变形机制与构造演化具重要意义.聂拉木拆离断层(ND)(86°E)位于STDS中段(81°~89°E),ND下盘不同构造位置(即采样点位与ND的构造距离)的变形花岗质岩脉具有一定程度的同构造特征,锆石-独居石U-Th/Pb年龄可以不同程度地厘定变形时间:(1)样品T11N37(ND下盘约3500m构造位置)的侵位年龄为27.4±0.2Ma;(2)样品T11N32(ND下盘约1400m构造位置)的侵位年龄为22.0±0.3Ma;(3)样品T11N25(ND下盘约150m构造位置)的侵位年龄为17.1±0.2Ma,结合ND下盘冷却历史和T11N25变形温度,认为其变形最晚开始时间约为16Ma.年代学结果表明,变形作用的最晚开始时间由下盘往拆离面逐渐变年轻.因此提出ND下盘变形迁移的新模式,即ND下盘在约27.5Ma之前开始纯剪切为主的变形作用,随后变形以约0.3mm/a的速率向拆离面移动,并于约18Ma在藏南拆离断层剪切带(STDsz)底部转化为简单剪切变形为主.由于ND变形结束于14~13Ma,这意味着北向剪切作用的持续时限小于约5Ma,对下地壳流动模型提出新的挑战.刘小兵 刘小汉 LELOUP P.H. MAHEO G. PAQUETTE J.L. 张鑫刚 周学君 2012科学通报2012,57,17:6
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