• Title of article

    Crustal structure variation along 30°N in the eastern Tibetan Plateau and its tectonic implications

  • Author/Authors

    Wang، نويسنده , , Chun-Yong and Lou، نويسنده , , Hai and Silver، نويسنده , , Paul G. and Zhu، نويسنده , , Lupei and Chang، نويسنده , , Lijun، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2010
  • Pages
    10
  • From page
    367
  • To page
    376
  • Abstract
    We determined crustal structure along the latitude 30°N through the eastern Tibetan Plateau using a teleseismic receiver function analysis. The data came mostly from seismic stations deployed in eastern Tibet and western Sichuan region from 2004 to 2006. Crustal thickness and Vp/Vs ratio at each station were estimated by the H–k stacking method. On the profile, the mean crustal thickness and Vp/Vs ratio were found to be 62.3 km and 1.74 in the Lhasa block, 71.2 km and 1.79 near the Bangong–Nujiang suture, 66.3 km and 1.80 in the Qiangtang block, 59.8 km and 1.81 in the Songpan–Garze block, and 42.9 km and 1.76 in the Yangtze block, respectively. The estimated crustal thicknesses are consistent with predictions based on the topography and the Airy isostasy, except near the Bangong–Nujiang suture and in the Qiangtang block where the crust is 5–10 km thicker than predicted, indicating that the crust may be denser, possibly due to mafic underplating. We also inverted receiver functions for crustal velocity structure along the profile, which reveals a low S-wave velocity zone in the lower crust beneath the eastern Tibetan Plateau, although the extent of the low-velocity zone varies considerably. The low-velocity zone, together with previous results, suggests limited partial melting and localized crustal flow in the lower crust of the eastern Tibetan Plateau.
  • Keywords
    crustal structure , Eastern Tibetan Plateau , Airy-type isostatic compensation , low-velocity zone , teleseismic P-wave receiver function
  • Journal title
    Earth and Planetary Science Letters
  • Serial Year
    2010
  • Journal title
    Earth and Planetary Science Letters
  • Record number

    2327929