• Title of article

    4D analogue modelling of transtensional pull-apart basins

  • Author/Authors

    Wu، نويسنده , , Jonathan E. and McClay، نويسنده , , Ken and Whitehouse، نويسنده , , Paul and Dooley، نويسنده , , Tim، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2009
  • Pages
    16
  • From page
    1608
  • To page
    1623
  • Abstract
    Scaled sandbox models were used to investigate the 4D evolution of pull-apart basins formed above underlapping releasing stepovers in both pure strike-slip and transtensional basement fault systems. Serial sectioning and 3D volume reconstruction permitted analysis of the full 3D fault geometries. Results show that very different pull-apart basins are developed in transtension compared to pure strike-slip. Both types of models produced elongate, sigmoidal to rhomboidal pull-apart systems, but the transtensional pull-apart basins were significantly wider and uniquely developed a basin margin of en-echelon oblique-extensional faults. Dual, opposing depocentres formed in the transtensional model whereas a single, central depocentre formed in pure strike-slip. In transtension, a distinct narrow graben system formed above the principal displacement zones (PDZs). Cross-basin fault systems that linked the offset PDZs formed earlier in the transtensional models. tial model runs to higher PDZ displacements allowed the progressive evolution of the fault systems to be evaluated. In cross-section, transtensional pull-aparts initiated as asymmetric grabens bounded by planar oblique-extensional faults. With increasing displacement on the PDZs, basin subsidence caused these faults to become concave-upwards and lower in dip angle due to fault block collapse towards the interior of the basin. In addition, strain partitioning caused fault slip to become either predominantly extensional or strike-slip. The models compare closely with the geometries of natural pull-apart basins including the southern Dead Sea fault system and the Vienna Basin, Austria.
  • Keywords
    Analogue modelling , En-echelon faults , strain partitioning , Vienna Basin , Dead Sea , Pull-apart basins , transtension , Pure strike-slip
  • Journal title
    Marine and Petroleum Geology
  • Serial Year
    2009
  • Journal title
    Marine and Petroleum Geology
  • Record number

    2251696