• Title of article

    Mantle temperature as a control on the time scale of thermal evolution of extensional basins

  • Author/Authors

    Petersen، نويسنده , , K.D. and Armitage، نويسنده , , J.J. and Nielsen، نويسنده , , S.B. and Thybo، نويسنده , , H.، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2015
  • Pages
    10
  • From page
    61
  • To page
    70
  • Abstract
    Extension of the lithosphere, the thermo-mechanical boundary layer above the convecting mantle, is followed by cooling and subsidence. The timescale of oceanic basin subsidence is ∼100 Myr whereas basins of the continental interior often subside continuously for more than 200 Myr after rifting. Using numerical modelling, we show how these diverse rifting scenarios are unified when accounting for varying mantle potential temperature. At a temperature of 1300 °C, cooling is plate-like with nearly exponential subsidence as observed in oceanic basins. At 1200 °C, subsidence is almost linear and continues for more than 800 Myr. The longevity of basin subsidence in the continental interior can therefore be explained by variation of mantle temperature. An additional cause of the longevity of subsidence is related to the equilibrium thickness of the lithosphere which is increased by the local reduction of heat producing elements due to crustal thinning. Consequently, the thermally mature lithosphere of an extensional basin can be thicker than the surrounding lithosphere. This mechanism contributes to additional thermal subsidence compared to the case where the base of the lithosphere is assumed held at a constant depth.
  • Keywords
    cratonic basins , crustal heat production , Rifting , Thermal subsidence , equilibrium lithosphere , Small-scale mantle convection
  • Journal title
    Earth and Planetary Science Letters
  • Serial Year
    2015
  • Journal title
    Earth and Planetary Science Letters
  • Record number

    2333106