4.5 Article

Distinct deformational history of two contrasting tectonic domains in the Chinese Altai: Their significance in understanding accretionary orogenic process

期刊

JOURNAL OF STRUCTURAL GEOLOGY
卷 73, 期 -, 页码 64-82

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.jsg.2015.02.007

关键词

Central Asian orogenic belt; Chinese Altai; Deformation; Structural evolution; Terrane accretion

资金

  1. NSFC [41190075, 41273048]
  2. Major Basic Research Project of the Ministry of Science and Technology of China [2014CB44801]
  3. Hong Kong Research Grant Council [HKU705311P, HKU704712P]
  4. HKU CRCG grant and PROCORE France/Hong Kong Joint Research Scheme
  5. Project 'Continental construction in Central Asia' [592]
  6. Joint Laboratory of Chemical Geodynamics
  7. Grant Agency of the Czech Republic [P210/12/2205]
  8. Ministry of Education of the Czech Republic [LK11202]

向作者/读者索取更多资源

The Chinese Altai, a key component of the western Central Asian Orogenic Belt, is considered to be formed through multiple accretions of different terranes. However, the deformational histories of each terrane (tectonic domain), i.e. structural records before and after the accretion, are rarely studied, which has hindered our understanding of the accretionary processes. To fill the gap, a systematic macro- and microscopic structural analysis was carried out on two contrasting litho-tectonic units, i.e. the early Paleozoic low-grade Alegedayi Ophiolitic Complex (AOC) juxtaposed to the high grade Tarlang Granitic Massif (TGM). Selected rock samples were analyzed using zircon U-Pb isotopic dating to constrain the timing of polyphase deformation. Our structural and geochronological data suggest that the two litho-tectonic units were initially detached and located in different crustal levels and experienced distinct phases of deformation under contrasting P-T conditions. They were mutually accreted with each other in the early Devonian and jointly underwent a WNW-ESE-directed shortening deformational event (D-1) at similar to 390 Ma. The change of tectonic regime was further enhanced by a subsequent NNE-SSW-directed shortening deformation (D-2) after similar to 380 Ma. The shortening process ended before the crustal-scale sinistral strike-slip shearing deformation along the Erqis fault zone at 290 - 240 Ma. Results of this study provide solid field-based evidence for a model that the Chinese Altai initially underwent a nearly E-W-oriented subduction-accretional event in the middle Paleozoic, before it was reoriented to a nearly N-S-oriented convergence. (C) 2015 Elsevier Ltd. All rights reserved.

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