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Displacement transfer from fault-bend to fault-propagation fold geometry: An example from the Himalayan thrust front
Institution:1. Talisman Energy Inc., Calgary, Alberta T2P 5C5, Canada;2. Department of Geology and Geophysics, University of Calgary, Calgary, Alberta T2N 1N4, Canada;3. Department of Geological Sciences and Geological Engineering, Queen''s University, Kingston, Ontario K7L 3N6, Canada;4. Department of Geosciences, Oregon State University, Corvallis, OR 97331, USA
Abstract:The leading edge of the ENE-trending Himalayan thrust front in Pakistan exhibits along-strike changes in deformational style, ranging from fault-bend to fault-propagation folds. Although the structural geometry is very gently deformed throughout the Salt Range, it becomes progressively more complex to the east as the leading edge of the emergent Salt Range Thrust becomes blind. Surface geology, seismic reflection, petroleum well, and chronostratigraphic data are synthesized to produce a 3-D kinematic model that reconciles the contrasting structural geometries along this part of the Himalayan thrust front. We propose a model whereby displacement was transferred, across a newly-identified lateral ramp, from a fault-bend fold in the west to fault-propagation folds in the east and comparable shortening was synchronously accommodated by two fundamentally different mechanisms: translation vs. telescoping. However, substantially different shortening distribution patterns within these structurally contrasting segments require a tear fault, which later is reactivated as a thrust fault. The present geometry of this S-shaped displacement transfer zone is a combined result of the NW–SE compression of the lateral culmination wall and associated tear fault, and their subsequent modification due to mobilization of underlying ductile salt.
Keywords:Displacement transfer  Lateral culmination wall  Fault-bend fold  Fault-propagation fold  Salt Range  Pakistan
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