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Magnetotelluric Study to Characterize Sediment Thickness Across Kachchh and Cambay Rift Basins, Western India


Affiliations
1 Dr K. S. Krishnan Geomagnetic Research Laboratory, Indian Institute of Geomagnetism, Allahabad - 221 505, India
 

The Kachchh and Cambay rift basins are two pericon-tinental rift basins at the western continental margin of India (WCMI), which evolved during different stages of the Mesozoic era. Magnetotelluric measure-ments were carried out at 68 stations along four east–west trending profiles across these basins with an aim to infer basement configuration and sediment thickness. The data were analysed for galvanic distortions and decomposed into transverse electric (TE) and transverse magnetic (TM)-modes by rotating the im-pedance tensor into corresponding geoelectric strike directions of the four profiles. The decomposed data responses were then inverted using a nonlinear conjugate gradient algorithm. The top conductive layers (∼2500–7500 S) across the Kachchh and Cambay rift basins indicate the presence of Cenozoic sediments and Deccan traps, which corroborates the results of earlier geophysical studies across these basins. The sediment thickness is low across Diyodar and Tharad ridges compared to the Sanchore, Patan and Mehsana sub-basins. A high conductive zone near Mehsana may support the evidence for the presence of Mesozoic sediments beneath traps as inferred from a deep seis-mic sounding (DSS) study. Even though the Oil and Natural Gas Corporation Limited (ONGC) drilled wells and DSS study reported the presence of Mesozo-ic sediments beneath the traps near Tharad ridge, their presence here is not clear from this study. Igne-ous intrusives and a Precambrian Aravalli–Delhi fold belt are delineated on either side of the Cambay rift basin. The electrical resistivity variations across these basins lead to the inference that the subsurface struc-ture is highly heterogeneous in nature due to faults within the rift basins.

Keywords

Cambay Rift, Deccan Traps, Kachchh Rift, Magnetotellurics, Sediment Thickness.
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  • Chave, A. D. and Jones, A. G., The Magnetotelluric Method: Theory and Practice, Cambridge University Press, 2012.
  • Biswas, S. K., Rift basins in the western margin of India and their hydrocarbon prospects. Bull. Am. Assoc. Pet. Geol., 1982, 66, 1497-1513.
  • Biswas, S. K., Regional tectonic framework, structure and evolu-tion of the western marginal basins of India. Tectonophysics, 1987, 135, 307-327.
  • Kaila, K. L., Tewari, H. C., Krishna, V. G., Dixit, M. M., Sarkar, D. and Reddy, M. S., Deep seismic sounding studies in the north Cambay and Sanchore basins, India. Geophys. J. Int., 1990, 103, 621-637.
  • Mishra, D. C., Gupta, S. B. and Tiwari, V. M., A geotransect from Dharimanna to Billimora across the Cambay and Narmada-Tapti rift basins, India. Int. Geol. Rev., 1998, 40, 1007-1020.
  • Kumar, G. P., Mahesh, P., Nagar, M., Mahender, E., Kumar, V., Mohan, K. and Kumar, M. R., Role of deep crustal fluids in the genesis of intraplate earthquakes in the Kachchh region, north-western India. Geophys. Res. Lett., 2017, 44, 4054-4063.
  • Danda, N., Rao, C. K. and Kumar, A., Geoelectric structure of northern Cambay rift basin from magnetotelluric data. Earth Planets Space, 2017, 69, 140.
  • Biswas, S. K., A review on the evolution of rift basins in India during the Gondwana with special reference to western Indian basins and their hydrocarbon prospects. PINSA, 1999, 65, 261-283.
  • Jones, A. G. and Jödicke, H., Magnetotelluric transfer function estimation improvement by a coherence-based rejection technique. Paper presented at 54th Annual Meeting, Society of Exploration Geophysicists, Atlanta, USA, 1984.
  • Jones, A. G., Chave, A. D., Egbert, G., Auld, D. and Bahr, K., A comparison of techniques for magnetotelluric response function estimation. J. Geophys. Res., 1989, 94, 14201-14213.
  • McNeice, G. W. and Jones, A. G., Multisite, multifrequency tensor decomposition of magnetotelluric data. Geophysics, 2001, 66, 158-173.
  • Spratt, J. E. and Craven, J., Magnetotelluric imaging of the Nechako basin, British Columbia, Canada. Geological Survey of Canada, Current Research, 2010, 2010-3.
  • Rodi, W. and Mackie, R. L., Nonlinear conjugate gradients algorithm for 2-D magnetotelluric inversion. Geophysics, 2001, 66, 174-187.
  • Ogawa, Y., On two dimensional modeling of magnetotelluric field data. Surv. Geophys., 2002, 23, 251-273.
  • Rao, C. K., Ogawa, Y., Gokarn, S. G. and Gupta, G., Electromagnetic imaging of magma across the Narmada-Son lineament, central India. Earth Planets Space, 2004, 56, 229-238.
  • Bera, P. and Rao, C. K., Magnetotelluric method: a tool for deep crustal study. In 9th Biennial International Conference and Expo-sition on Petroleum Geophysics, Mumbai, Society of Petroleum Geophysicists, India, 2012, pp. P-068.
  • Seshu, D., Rama Rao, P. and Naganjaneyulu, K., Three-dimensional gravity modeling of Kutch region, India. J. Asian Earth Sci., 2015, 115, 16-28.
  • Chandrasekhar, D. V. and Mishra, D. C., Some geodynamic aspects of Kutch basin and seismicity: an insight from gravity studies. Curr. Sci., 2002, 83, 492-498.
  • Rao, V. V., Prasad, B. R., Reddy, P. R. and Tewari, H. C., Evolution of Proterozoic Aravalli-Delhi Fold Belt in the northwestern Indian Shield from seismic studies. Tectonophysics, 2000, 327, 109-130.

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  • Magnetotelluric Study to Characterize Sediment Thickness Across Kachchh and Cambay Rift Basins, Western India

Abstract Views: 199  |  PDF Views: 82

Authors

Nagarjuna Danda
Dr K. S. Krishnan Geomagnetic Research Laboratory, Indian Institute of Geomagnetism, Allahabad - 221 505, India
C. K. Rao
Dr K. S. Krishnan Geomagnetic Research Laboratory, Indian Institute of Geomagnetism, Allahabad - 221 505, India

Abstract


The Kachchh and Cambay rift basins are two pericon-tinental rift basins at the western continental margin of India (WCMI), which evolved during different stages of the Mesozoic era. Magnetotelluric measure-ments were carried out at 68 stations along four east–west trending profiles across these basins with an aim to infer basement configuration and sediment thickness. The data were analysed for galvanic distortions and decomposed into transverse electric (TE) and transverse magnetic (TM)-modes by rotating the im-pedance tensor into corresponding geoelectric strike directions of the four profiles. The decomposed data responses were then inverted using a nonlinear conjugate gradient algorithm. The top conductive layers (∼2500–7500 S) across the Kachchh and Cambay rift basins indicate the presence of Cenozoic sediments and Deccan traps, which corroborates the results of earlier geophysical studies across these basins. The sediment thickness is low across Diyodar and Tharad ridges compared to the Sanchore, Patan and Mehsana sub-basins. A high conductive zone near Mehsana may support the evidence for the presence of Mesozoic sediments beneath traps as inferred from a deep seis-mic sounding (DSS) study. Even though the Oil and Natural Gas Corporation Limited (ONGC) drilled wells and DSS study reported the presence of Mesozo-ic sediments beneath the traps near Tharad ridge, their presence here is not clear from this study. Igne-ous intrusives and a Precambrian Aravalli–Delhi fold belt are delineated on either side of the Cambay rift basin. The electrical resistivity variations across these basins lead to the inference that the subsurface struc-ture is highly heterogeneous in nature due to faults within the rift basins.

Keywords


Cambay Rift, Deccan Traps, Kachchh Rift, Magnetotellurics, Sediment Thickness.

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DOI: https://doi.org/10.18520/cs%2Fv116%2Fi2%2F299-304