Active folding of fluvial terraces across the Siwaliks Hills, Himalayas of central Nepal
Top Cited Papers
- 10 March 2000
- journal article
- Published by American Geophysical Union (AGU) in Journal of Geophysical Research
- Vol. 105 (B3) , 5735-5770
- https://doi.org/10.1029/1999jb900292
Abstract
We analyze geomorphic evidence of recent crustal deformation in the sub‐Himalaya of central Nepal, south of the Kathmandu Basin. The Main Frontal Thrust fault (MFT), which marks the southern edge of the sub‐Himalayan fold belt, is the only active structure in that area. Active fault bend folding at the MFT is quantified from structural geology and fluvial terraces along the Bagmati and Bakeya Rivers. Two major and two minor strath terraces are recognized and dated to be 9.2, 2.2, and 6.2, 3.7 calibrated (cal) kyr old, respectively. Rock uplift of up to 1.5 cm/yr is derived from river incision, accounting for sedimentation in the Gangetic plain and channel geometry changes. Rock uplift profiles are found to correlate with bedding dip angles, as expected in fault bend folding. It implies that thrusting along the MFT has absorbed 21±1.5 mm/yr of N‐S shortening on average over the Holocene period. The ±1.5 mm/yr defines the 68% confidence interval and accounts for uncertainties in age, elevation measurements, initial geometry of the deformed terraces, and seismic cycle. At the longitude of Kathmandu, localized thrusting along the Main Frontal Thrust fault must absorb most of the shortening across the Himalaya. By contrast, microseismicity and geodetic monitoring over the last decade suggest that interseismic strain is accumulating beneath the High Himalaya, 50–100 km north of the active fold zone, where the Main Himalayan Thrust (MHT) fault roots into a ductile décollement beneath southern Tibet. In the interseismic period the MHT is locked, and elastic deformation accumulates until being released by large (Mw> 8) earthquakes. These earthquakes break the MHT up to the near surface at the front of the Himalayan foothills and result in incremental activation of the MFT.This publication has 42 references indexed in Scilit:
- Rupture history and seismotectonics of the 1991 Uttarkashi, Himalaya earthquakePublished by Elsevier ,1999
- Late Quaternary stream incision and uplift in the forearc of the Cascadia subduction zone, western OregonJournal of Geophysical Research, 1995
- Interseismic strain accumulation on the Himalayan crustal ramp (Nepal)Geophysical Research Letters, 1995
- Distributed deformation in southern and western Tibet during and after the India‐Asia collisionJournal of Geophysical Research, 1994
- Uplift in the Nepal Himalaya revealed by Spirit levelingGeophysical Research Letters, 1992
- Thrust tectonics, crustal shortening, and the structure of the far‐eastern Nepal HimalayaTectonics, 1991
- Contemporary tectonics of the Himalayan frontal fault system: folds, blind thrusts and the 1905 Kangra earthquakeJournal of Structural Geology, 1991
- Southern limits of major earthquake ruptures along the Himalaya between longitudes 75° and 90°ETectonophysics, 1989
- Gravity anomalies, flexure of the Indian Plate, and the structure, support and evolution of the Himalaya and Ganga BasinTectonics, 1985
- River profiles along the Himalayan arc as indicators of active tectonicsTectonophysics, 1983