4.7 Article

Lateral variation of crustal structure in the Ordos block and surrounding regions, North China, and its tectonic implications

期刊

EARTH AND PLANETARY SCIENCE LETTERS
卷 387, 期 -, 页码 198-211

出版社

ELSEVIER
DOI: 10.1016/j.epsl.2013.11.033

关键词

Ordos block; crustal structure; composition; teleseismic receiver function; Poisson's ratio

资金

  1. National Natural Science Foundation of China [90914005, 91014006]
  2. Ministry of Science and Technology of China [2006FY110100]

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Crustal thicknesses and Poisson's ratios in the Ordos block and surrounding regions were estimated by the use of the H-k stacking method on teleseismic receiver functions. The data came from 353 temporary and permanent seismic stations in 2006-2011. Results show that the crustal thickness and Poisson's ratio gently vary within the Ordos block, with an average of 41.3 km and 0.265, respectively, consistent with a felsic composition of the crust. Crustal thicknesses predicted on the basis of Airy isostasy are consistent with the estimated thicknesses, implying that the topography is approximately compensated. The reactivated portion of the North China Craton that has undergone Mesozoic-Cenzoic lithospheric thinning is also characterized by the thinning crust, while the Ordos block maintains normal crustal thickness and average crustal velocity. Inferred higher densities in the lower crust and the anti-correlation between Poisson's ratio and crustal thickness in the Ordos block may be the result from underplating of mafic magmas in the Precambrian. Around the Ordos block, the Paleoproterozoic khondalite zone in the northern edge has higher Poisson's ratio and thickened crust, which is consistent with the lower crust being of more mafic composition. The Weihe-Shanxi graben in the southeastern edge has mid-high Poisson's ratio, high heat flow and thinning crust, which is consistent with the known transtensional tectonic setting. In the Liupanshan thrust belt, along the southwestern edge of the Ordos plateau, significant variations in crustal thicknesses and Poisson's ratios occur on two sides. Besides a thickened crust, a concaved Moho implies horizontal shortening of this edge of the Ordos block due to its collision with the northeastern Tibetan Plateau. The structural differences between the eastern and western edges of the Ordos block reflect that the Ordos block is in tectonic stress environment of the western compression and the eastern extension. (C) 2013 Elsevier B.V. All rights reserved.

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