New insights into the structural and tectonic settings of the Bay of Bengal using high-resolution earth gravity model data

被引:0
作者
Satya Narayan
Ujjawal Kumar
Sanjit Kumar Pal
Soumyashree Debasis Sahoo
机构
[1] Oil and Natural Gas Corporation (ONGC),Department of Applied Geophysics
[2] Indian Institute of Technology (Indian School of Mines),undefined
来源
Acta Geophysica | 2021年 / 69卷
关键词
The Bay of Bengal; Earth gravity static model data; Lineament setup analysis; Radially averaged power spectrum analysis; 2D modelling;
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摘要
The residual anomaly of GECO model-derived gravity data has been enhanced using first vertical derivative, tilt derivative and balanced horizontal derivative for delineation of structural and tectonic features over the Bay of Bengal (BOB). Entire BOB basin is classified in eastern, central and western basins for analysis of the delineated lineaments to understand the tectonic setting. It is observed that major lineament trends in the western and central basins are N–S, NE–SW, and in the eastern basin N–S, NNE–SSW, while prominent lineament trend for the entire BOB basin is in N–S direction. The statistical analysis of the lineament attributes, viz. lineament density, circular standard deviation, circular variance for the lineaments, reveals that the crust under the central basin has experienced the maximum tectonic disturbances followed by the western and the eastern basins. Euler depth solutions for structural index (SI) zero estimate the possible source depths of the lineaments as (i) 3.0–9.0 km (possibly top sedimentary layer), (ii) 9.0–18.0 km (possibly intermediate sedimentary layer), (iii) 18.0–24.0 km (possibly upper crustal layer), (iv) 24.0–33.0 km (possibly lower crustal layer) and (v) 33.0–64.0 km (possibly associated with Lithosphere). Power spectral analysis and 2D forward modelling indicate that sediment thickness varies from 2.0 to 17.0 km; crustal thickness varies from 4.0 to 16.0 km, and Moho varies from 10 to 34 km depth over the BOB. The present study confirms that the origin of the 85°E ridge is due to the sagging of ridge crust into the mantle lithosphere, whereas the NER has a hotspot origin.
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页码:2011 / 2033
页数:22
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[1]  
Agarwal PK(1999)Was there an intra-continental rift between India and Sri Lanka? Jour Geol Soc India 54 237-249
[2]  
Pandey OP(2009)Structure tectonics of 85°E ridge from analysis of geopotential data Tectonophysics 27 1841-1848
[3]  
Anand SP(2010)Delineation of 85°E ridge and its structure in Mahanadi offshore basin Eastern Continental Margin of India (ECMI) from seismic reflection imaging Mar Petrol Geol 66 1497-1513
[4]  
Rajaram M(1982)Rift basins in western margin of India and their hydrocarbon prospects with special reference to Kutch basin Am Ass Petrol Geol Bull 269 323-336
[5]  
Majumdar TJ(1997)Seismicity of the Bay of Bengal: evidence for intraplate deformation of the northern Indian Plate Tectonophysics 184 213-228
[6]  
Bhattacharyya R(1990)Structural style of intra-plate deformation Central Indian Ocean Basin: evidence for the role of fracture zones Tectonophysics 344 855-858
[7]  
Bastia R(1990)Fault reactivation in the Central Indian Ocean and the rheology of oceanic lithosphere Nature 149 955-966
[8]  
Radhakrishna M(1992)Seismic reflection images of intraplate deformation central Indian Ocean and their tectonic significance J Geol Soc London 19 1097-1100
[9]  
Das S(2020)Structural fabric over the seismically active Kachchh rift basin, India: Insight from world gravity model 2012 Environ Earth Sci 19 1237-1240
[10]  
Kale A(2019)Delineation of subsurface geological fractures in the Cambay rift and surrounding regions of NW India: an integrated approach using satellite derived EIGEN-6C4 gravity data Geocarto Int 1 127-136