首页> 外文期刊>Tectonophysics: International Journal of Geotectonics and the Geology and Physics of the Interior of the Earth >The Cenozoic rotational extrusion of the Chuan Dian Fragment: New paleomagnetic results from Paleogene red-beds on the southeastern edge of the Tibetan Plateau
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The Cenozoic rotational extrusion of the Chuan Dian Fragment: New paleomagnetic results from Paleogene red-beds on the southeastern edge of the Tibetan Plateau

机译:川滇碎片的新生代旋转挤压:青藏高原东南缘古近纪红层的新古磁结果

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Paleomagnetic studies were conducted on the Eocene and Oligocene strata at the western part of the Chuan Dian Fragment in order to describe the crustal deformation induced by continuous penetration of the Indian plate into Eurasia during the late Cenozoic. High-temperature magnetic components with unblocking temperatures of similar to 680 degrees C were isolated, and positive fold and/or reversal tests reveal the primary nature of the magnetization. The tilt-corrected site-mean directions obtained from the Oligocene and middle-early Eocene strata are, respectively, Ds = 200.9 degrees, Is = 31.3 degrees, k = 52.8, alpha(95) = 7.7 degrees and Ds = 29.7 degrees, Is = 32.0 degrees, k = 44.9, alpha(95) = 5.6 degrees. Comparison of these results with previous paleomagnetic data from the Chuan Dian Fragment shows that the western and central parts of the Chuan Dian Fragment experienced similar to 20 degrees integral clockwise rotation relative to East Asia since the middle Miocene. However, the eastern part of the Chuan Dian Fragment has experienced different rotational deformation relative to East Asia since the Pliocene, because of the intense regional crustal deformation and activity on fault systems. The eastern boundary of the Chum Dian Fragment was bounded by the Yuanmou-Luezhijiang left lateral strike-slip fault prior to the Pliocene, and then substituted by the Xiaojiang left lateral strike-slip fault since the Pliocene, due to the eastwards spreading of the clockwise rotational movement of the Chuan Dian Fragment The evolutionary characteristics of the Ailaoshan-Red River and Xianshuihe-Xiaojiang strike-slip faults were controlled by the difference between the clockwise rotational extrusion velocities of the Chuan Dian Fragment and the Indochina Block. (C) 2015 Elsevier B.V. All rights reserved.
机译:对川滇断块西部的始新世和渐新世地层进行了古磁研究,目的是描述新生代晚期印度板块不断渗透进入欧亚大陆引起的地壳变形。分离出具有接近680摄氏度的疏通温度的高温磁性元件,并且正向折叠和/或反向测试揭示了磁化的主要性质。从渐新世和中早期始新世地层获得的倾斜校正的站点平均方向分别为Ds = 200.9度,Is = 31.3度,k = 52.8,alpha(95)= 7.7度和Ds = 29.7度,Is = 32.0度,k = 44.9,alpha(95)= 5.6度。将这些结果与之前的川滇断层古地磁数据进行比较表明,自中新世中期以来,川滇断层的西部和中部相对于东亚经历了近似20度的整体顺时针旋转。然而,自上新世以来,川滇碎片的东部相对于东亚经历了不同的旋转变形,这是由于强烈的地壳变形和对断裂系统的活动。春滇断片的东部边界在上新世之前被元谋—勒之江左旋走滑断层所界定,然后由于上新世以来,由上新世以来的小江左旋走滑断层所替代。川滇片断的旋转运动哀牢山—红河和咸水河—小江走滑断层的演化特征受川滇片断和印度支那地块顺时针旋转挤压速度的差异控制。 (C)2015 Elsevier B.V.保留所有权利。

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