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Original Articles

The age of the Cuddapah and Kurnool systems, southern India

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Pages 453-464 | Published online: 03 Aug 2007

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A.B. Ronov, V. Ye. Khain & K.B. Seslavinskiy. (1982) Lower and middle Riphean lithologic complexes of the world. International Geology Review 24:5, pages 509-525.
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Crossref
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Crossref
K Satish Kumar, P SivaSankar, S Parveen Begum, B Laxman, Phalke Mahesh Devidas, V Maha Laxmi Naidu, P Solomon Raju & D Srinagesh. (2021) Appraisal of Veldurti–Kalva–Gani (VKG) fault, Cuddapah Basin, India: Gravity and magnetic approach. Journal of Earth System Science 130:1.
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C.S. Sindhuja, C. Manikyamba, Arijit Pahari, M. Santosh & Li Tang. (2021) Metallogenesis and depositional environment of the Archean-Proterozoic carbonaceous phyllites from the Dharwar Craton, India. Ore Geology Reviews 131, pages 103966.
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Ashoka G. DessaiAshoka G. Dessai. 2021. The Lithosphere Beneath the Indian Shield. The Lithosphere Beneath the Indian Shield 97 124 .
Shuva Shankha Ganguli, Sanjit Kumar Pal, J V Rama Rao & B Sunder Raj. (2020) Gravity–magnetic appraisal at the interface of Cuddapah Basin and Nellore Schist Belt (NSB) for shallow crustal architecture and tectonic settings. Journal of Earth System Science 129:1.
Crossref
Sukanta Goswami, Sukanta Dey, Syed Zakaulla & M B Verma. (2019) Active rifting and bimodal volcanism in Proterozoic Papaghni sub-basin, Cuddapah basin (Andhra Pradesh), India. Journal of Earth System Science 129:1.
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Yogmaya Shukla, Mukund Sharma & V.N. Sergeev. (2020) Organic walled microfossils from the Neoproterozoic Owk Shale, Kurnool Group, South India. Palaeoworld 29:3, pages 490-511.
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Peng Peng, Zhaoyuan Qin, Fengbo Sun, Xiaotong Zhou, Jinghui Guo, Mingguo Zhai & Richard E. Ernst. (2019) Nature of charnockite and Closepet granite in the Dharwar Craton: Implications for the architecture of the Archean crust. Precambrian Research 334, pages 105478.
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Th. Dhanakumar Singh, C. Manikyamba, Li Tang, Sohini Ganguly, M. Santosh, K.S.V. Subramanyam & Arubam C. Khelen. (2019) Phanerozoic magmatism in the Proterozoic Cuddapah Basin and its connection with the Pangean supercontinent. Geoscience Frontiers 10:6, pages 2239-2249.
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Challa Satyasree Sindhuja, Arubam Chanu Khelen & Chakravadhanula Manikyamba. (2019) Geochemistry of Archean–Proterozoic shales, Dharwar Craton, India: Implications on depositional environment. Geological Journal 54:5, pages 2759-2778.
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V. V. Sesha Sai. (2019) Proterozoic Magnesian Feldspathic Magmatism in the Nallamalai Fold Belt, Southern India — Petrogenesis of Vellaturu-Ipuru-Nakerikallu (VIN) Arc Magmatic Granites, Eastern Dharwar Craton. Journal of the Geological Society of India 93:4, pages 409-418.
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Vikash Tripathy, Satyapal, S. K. Mitra & V. V. Sesha Sai. 2019. Tectonics and Structural Geology: Indian Context. Tectonics and Structural Geology: Indian Context 219 252 .
Adrika Roy, Gopal Chakrabarti & Debasish Shome. (2018) Geochemistry of the Neoproterozoic Narji limestone, Cuddapah Basin, Andhra Pradesh, India: implication on palaeoenvironment. Arabian Journal of Geosciences 11:24.
Crossref
H. N. Bhattacharya & Sandip Bandyopadhyay. (2018) Genesis of copper-lead mineralization in the regionally zoned Agnigundala Sulfide Belt, Cuddapah Basin, Andhra Pradesh, India. Mineralium Deposita 53:8, pages 1213-1230.
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Th. Dhanakumar Singh, C. Manikyamba, K.S.V. Subramanyam, Sohini Ganguly, Arubam C. Khelen & N. Ramakrishna Reddy. (2018) Mantle heterogeneity, plume-lithosphere interaction at rift controlled ocean-continent transition zone: Evidence from trace-PGE geochemistry of Vempalle flows, Cuddapah Basin, India. Geoscience Frontiers 9:6, pages 1809-1827.
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Arnab Sain & Dilip Saha. (2018) Structure and tectonics of a Mesoproterozoic ophiolite – Insight from Kanigiri Ophiolite with a mélange zone, southern India. Tectonophysics 744, pages 177-204.
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DEBIDARSANI SAHOO, KAMAL LOCHAN PRUSETH, DEWASHISH UPADHYAY, SAMEER RANJAN, DIPAK C. PAL, RAHUL BANERJEE & SHEKHAR GUPTA. (2017) New constraints from zircon, monazite and uraninite dating on the commencement of sedimentation in the Cuddapah basin, India. Geological Magazine 155:6, pages 1230-1246.
Crossref
G. Lakshminarayana & D. Vijay Kumar. (2018) Occurrence of High Level Magma Intrusives and Associated Mineralization near Gani Inlier, Kurnool Sub-Basin, Cuddapah Basin, India. Journal of the Geological Society of India 91:4, pages 431-440.
Crossref
A.B. Roy & Ritesh Purohit. 2018. Indian Shield. Indian Shield 45 79 .
Himadri Basu, P.S. Dandele, K. Ramesh Kumar, K.K. Achar & K. Umamaheswar. (2017) Geochemistry of black shales from the Mesoproterozoic Srisailam Formation, Cuddapah basin, India: Implications for provenance, palaeoweathering, tectonics, and timing of Columbia breakup. Geochemistry 77:4, pages 596-613.
Crossref
S. Sheppard, B. Rasmussen, Jian-Wei Zi, V. Soma Sekhar, D. Srinivasa Sarma, M. Ram Mohan, B. Krapež, S.A. Wilde & N.J. McNaughton. (2017) U–Pb dating of metamorphic monazite establishes a Pan-African age for tectonism in the Nallamalai Fold Belt, India. Journal of the Geological Society 174:6, pages 1062-1069.
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Arubam C. Khelen, C. Manikyamba, Sohini Ganguly, Th. Dhanakumar Singh, K.S.V. Subramanyam, S. Masood Ahmad & M. Ramakrishna Reddy. (2017) Geochemical and stable isotope signatures of Proterozoic stromatolitic carbonates from the Vempalle and Tadpatri Formations, Cuddapah Supergroup, India: Implications on paleoenvironment and depositional conditions. Precambrian Research 298, pages 365-384.
Crossref
J Noble & MD Arzoo Ansari. (2017) Environmental isotope investigation for the identification of source of springs observed in the hillock on the left flank of Gollaleru Earthen Dam, Andhra Pradesh, India. Journal of Earth System Science 126:5.
Crossref
Kasturi Chakraborty, P. K. Mukhopadhyay & Praveer Pankaj. (2016) Magmatism in western Cuddapahs: The mafic sills and lava flows of Vempalle and Tadpatri formations. Journal of the Geological Society of India 87:6, pages 631-660.
Crossref
D. Saha, S. Patranabis-Deb & A.S. Collins. 2016. 1 59 .
Subhadip Bhadra & Saibal Gupta. 2015. Ductile Shear Zones. Ductile Shear Zones 164 181 .
Alan S. Collins, Sarbani Patranabis-Deb, Emma Alexander, Cari N. Bertram, Georgina M. Falster, Ryan J. Gore, Julie Mackintosh, Pratap C. Dhang, Dilip Saha, Justin L. Payne, Fred Jourdan, Guillaume Backé, Galen P. Halverson & Benjamin P. Wade. (2015) Detrital mineral age, radiogenic isotopic stratigraphy and tectonic significance of the Cuddapah Basin, India. Gondwana Research 28:4, pages 1294-1309.
Crossref
Sojen Joy, Hielke Jelsma, Sebastian Tappe & Richard Armstrong. (2015) SHRIMP U–Pb zircon provenance of the Sullavai Group of Pranhita–Godavari Basin and Bairenkonda Quartzite of Cuddapah Basin, with implications for the Southern Indian Proterozoic tectonic architecture. Journal of Asian Earth Sciences 111, pages 827-839.
Crossref
Shankar Konda, Prasanta K. Patro & C. K. Rao. (2015) Geoelectric signatures of Palnad sub basin and Nallamalai Fold Belt, Cuddapah Basin, India. Journal of the Geological Society of India 86:4, pages 377-382.
Crossref
G. Chakrabarti, P. G. Eriksson & D. Shome. (2022) Chapter 17 Sedimentation in the Papaghni Group of rocks in the Papaghni sub-basin of the Proterozoic Cuddapah Basin, India. Geological Society, London, Memoirs 43:1, pages 255-267.
Crossref
Abdul Matin. (2022) Chapter 16 Tectonics of the Cuddapah Basin and a model of its evolution: a review. Geological Society, London, Memoirs 43:1, pages 231-254.
Crossref
Dilip Saha & Sarbani Patranabis-Deb. (2014) Proterozoic evolution of Eastern Dharwar and Bastar cratons, India ? An overview of the intracratonic basins, craton margins and mobile belts. Journal of Asian Earth Sciences 91, pages 230-251.
Crossref
Ramavati Mathur, B. Udai Raj & V. Balaram. (2014) Petrographic characteristics of the Proterozoic Vempalle carbonates, Cuddapah Basin, India and their implications. Journal of the Geological Society of India 84:3, pages 267-280.
Crossref
Abdul Matin. (2013) Tectonics in the Cuddapah fold-thrust belt in the Indian shield, Andhra Pradesh, India and its implication on the crustal amalgamation of India and Rayner craton of Antarctica during Neoproterozoic orogenesis. International Journal of Earth Sciences 103:1, pages 7-22.
Crossref
Vikash Tripathy & Dilip Saha. (2013) Plate margin paleostress variations and intracontinental deformations in the evolution of the Cuddapah basin through Proterozoic. Precambrian Research 235, pages 107-130.
Crossref
M. E. Bickford, D. Saha, J. Schieber, G. Kamenov, A. Russell & A. Basu. (2013) New U-Pb ages of zircons in the Owk Shale (Kurnool Group) with reflections on proterozoic porcellanites in India. Journal of the Geological Society of India 82:3, pages 207-216.
Crossref
M. Venkateshwarlu & N.V. Chalapathi Rao. (2013) New palaeomagnetic and rock magnetic results on Mesoproterozoic kimberlites from the Eastern Dharwar craton, southern India: Towards constraining India's position in Rodinia. Precambrian Research 224, pages 588-596.
Crossref
MUKUND SHARMA & YOGMAYA SHUKLA. (2012) Occurrence of helically coiled microfossil Obruchevella in the Owk Shale of the Kurnool Group and its significance. Journal of Earth System Science 121:3, pages 755-768.
Crossref
Dilip Saha & Vikash Tripathy. (2022) Palaeoproterozoic sedimentation in the Cuddapah Basin, south India and regional tectonics: a review. Geological Society, London, Special Publications 365:1, pages 161-184.
Crossref
S. Mohanty. (2011) Palaeoproterozoic assembly of the Napier Complex, Southern India and Western Australia: Implications for the evolution of the Cuddapah basin. Gondwana Research 20:2-3, pages 344-361.
Crossref
J. E. Conrad, J. R. Hein, A. K. Chaudhuri, S. Patranabis-Deb, J. Mukhopadhyay, G. K. Deb & N. J. Beukes. (2010) Constraints on the development of Proterozoic basins in central India from 40Ar/39Ar analysis of authigenic glauconitic minerals. Geological Society of America Bulletin 123:1-2, pages 158-167.
Crossref
Rajesh K. SrivastavaM.R. Goutham, K.V. Subbarao, C.V.R.K. Prasad, J.D.A. Piper & D.P. Miggins. 2011. Dyke Swarms:Keys for Geodynamic Interpretation. Dyke Swarms:Keys for Geodynamic Interpretation 73 93 .
Partha Pratim Chakraborty, Sukanta Dey & Sarada Prasad Mohanty. (2010) Proterozoic platform sequences of Peninsular India: Implications towards basin evolution and supercontinent assembly. Journal of Asian Earth Sciences 39:6, pages 589-607.
Crossref
G. Suresh, R. Ananthanarayana, R. C. Hanumanthu, Subhasish Ghosh, A. Anil Kumar & K. V. S. Reddy. (2010) Geology of Pulikonda and Dancherla alkaline complexes, Andhra Pradesh. Journal of the Geological Society of India 75:4, pages 576-595.
Crossref
K. Gopalan & Anil Kumar. (2008) Phlogopite K–Ca dating of Narayanpet kimberlites, south India: Implications to the discordance between their Rb–Sr and Ar/Ar ages. Precambrian Research 167:3-4, pages 377-382.
Crossref
C. Manikyamba, Robert Kerrich, Ignacio Gonz?lez-?lvarez, Ramavati Mathur & Tarun C. Khanna. (2008) Geochemistry of Paleoproterozoic black shales from the Intracontinental Cuddapah basin, India: implications for provenance, tectonic setting, and weathering intensity. Precambrian Research 162:3-4, pages 424-440.
Crossref
Dilip Saha & Sukanya Chakraborti. (2007) Advective heat transfer and fabric development in a shallow crustal intrusive granite ? the case of Proterozoic Vellaturu granite, south India. Journal of Earth System Science 116:5, pages 433-450.
Crossref
Laura C. Gregory, Joseph G. Meert, Vimal Pradhan, Manoj K. Pandit, Endale Tamrat & Shawn J. Malone. (2006) A paleomagnetic and geochronologic study of the Majhgawan kimberlite, India: Implications for the age of the Upper Vindhyan Supergroup. Precambrian Research 149:1-2, pages 65-75.
Crossref
C. Dobmeier, S. L?tke, K. Hammerschmidt & K. Mezger. (2006) Emplacement and deformation of the Vinukonda meta-granite (Eastern Ghats, India)?Implications for the geological evolution of peninsular India and for Rodinia reconstructions. Precambrian Research 146:3-4, pages 165-178.
Crossref
J. William SchopfAnatoliy B. KudryavtsevDavid G. AgrestiAndrew D. CzajaThomas J. Wdowiak. (2005) Raman Imagery: A New Approach to Assess the Geochemical Maturity and Biogenicity of Permineralized Precambrian Fossils. Astrobiology 5:3, pages 333-371.
Crossref
P. D. Sreedevi, K. Subrahmanyam & Shakeel Ahmed. (2005) Integrated approach for delineating potential zones to explore for groundwater in the Pageru River basin, Cuddapah District, Andhra Pradesh, India. Hydrogeology Journal 13:3, pages 534-543.
Crossref
J.M. Mabesoone & V.H. Neumann. 2005. Cyclic Development of Sedimentary Basins. Cyclic Development of Sedimentary Basins 449 502 .
K. V. V. Satyanarayana, Baldev R. Arora & A. S. Janardhan. (2003) Rock magnetism and palaeomagnetism of the Oddanchatram anorthosite, Tamil Nadu, South India. Geophysical Journal International 155:3, pages 1081-1092.
Crossref
Dilip Saha & Asru K. Chaudhuri. (2003) Deformation of the Proterozoic successions in the Pranhita?Godavari basin, south India?a regional perspective. Journal of Asian Earth Sciences 21:6, pages 557-565.
Crossref
Christoph J. Dobmeier & Michael M. Raith. (2003) Crustal architecture and evolution of the Eastern Ghats Belt and adjacent regions of India. Geological Society, London, Special Publications 206:1, pages 145-168.
Crossref
R.V Singh, R.M Sinha, B.S Bisht & D.C Banerjee. (2002) Hydrogeochemical exploration for unconformity-related uranium mineralization: example from Palnadu sub-basin, Cuddapah Basin, Andhra Pradesh, India. Journal of Geochemical Exploration 76:2, pages 71-92.
Crossref
Dilip Saha. (2002) Multi-Stage Deformation in the Nallamalai Fold Belt, Cuddapah Basin, South India - Implications for Mesoproterozoic Tectonism Along Southeastern Margin of India. Gondwana Research 5:3, pages 701-719.
Crossref
Asru K. Chaudhuri, Dilip Saha, Gautam K. Deb, Sarbani Patranabis Deb, Mrinal Kanti Mukherjee & Gautam Ghosh. (2002) The Purana Basins of Southern Cratonic Province of India - A Case for Mesoproterozoic Fossil Rifts. Gondwana Research 5:1, pages 23-33.
Crossref
Nilanjan Chatterjee & Somdev Bhattacharji. (2001) Petrology, geochemistry and tectonic settings of the mafic dikes and sills associated with the evolution of the Proterozoic Cuddapah Basin of south India. Journal of Earth System Science 110:4, pages 433-453.
Crossref
A.B. Roy. (2001) Neoproterozoic Crustal Evolution of Northwestern Indian Shield: Implications on Break up and Assembly of Supercontinents. Gondwana Research 4:3, pages 289-306.
Crossref
John K. Zachariah, Y.J. Bhaskar Rao, R. Srinivasan & K. Gopalan. (1999) Pb, Sr and Nd isotope systematics of uranium mineralised stromatolitic dolomites from the proterozoic Cuddapah Supergroup, south India: constraints on age and provenance. Chemical Geology 162:1, pages 49-64.
Crossref
Asru K. Chaudhuri, Joydip Mukhopadhyay, Sarbani Patranabis Deb & S.K. Chanda. (1999) The Neoproterozoic Cratonic Successions of Peninsular India. Gondwana Research 2:2, pages 213-225.
Crossref
A.B. Roy. (1999) Neoproterozoic Crustal Evolution, and India-Gondwana Linkage ? An Epilogue. Gondwana Research 2:2, pages 193-198.
Crossref
T. Radhakrishna, H. Maluski, J.G. Mitchell & M. Joseph. (1999) 40Ar/39Ar and K/Ar geochronology of the dykes from the south Indian granulite terrain. Tectonophysics 304:1-2, pages 109-129.
Crossref
RÓNADH COXRICHARD A. ARMSTRONG & LEWIS D. ASHWAL. (2022) Sedimentology, geochronology and provenance of the Proterozoic Itremo Group, central Madagascar, and implications for pre-Gondwana palaeogeography. Journal of the Geological Society 155:6, pages 1009-1024.
Crossref
B.K. Pandey, J.N. Gupta, K.J. Sarma & C.A. Sastry. (1997) Sm?Nd, Pb?Pb and Rb?Sr geochronology and petrogenesis of the mafic dyke swarm of Mahbubnagar, South India: implications for Paleoproterozoic crustal evolution of the Eastern Dharwar Craton. Precambrian Research 84:3-4, pages 181-196.
Crossref
N.V. Chalapathi Rao, John A. Miller, David M. Pyle & V. Madhavan. (1996) New Proterozoic KAr ages for some kimberlites and lamproites from the Cuddapah Basin and Dharwar Craton, South India: evidence for non-contemporaneous emplacement. Precambrian Research 79:3-4, pages 363-369.
Crossref
K.C. Miller & R.B. Hargraves. (1994) Paleomagnetism of some Indian kimberlites and lamproites. Precambrian Research 69:1-4, pages 259-267.
Crossref
Anil Kumar, V.M. Padma Kumari, A.M. Dayal, D.S.N. Murthy & K. Gopalan. (1993) RbSr ages of Proterozoic kimberlites of India: evidence for contemporaneous emplacement. Precambrian Research 62:3, pages 227-237.
Crossref
Vivek S. Kale & V. G. Phansalkar. (2007) Purana basins of peninsular India: a review . Basin Research 3:1, pages 1-36.
Crossref
B.K. Rastogi. (1989) Seismic monitoring around large dams at Nagarjunasagar and Srisailam in the southeastern part of Peninsular India. Physics of the Earth and Planetary Interiors 58:1, pages 35-43.
Crossref
Ramesh Venkatakrishnan & Firoz E. Dotiwalla. (1987) The Cuddapah Salient: a tectonic model for the Cuddapah Basin, India, based on Landsat image interpretation. Tectonophysics 136:3-4, pages 237-253.
Crossref
Steven C. Bergman. (2022) Lamproites and other potassium-rich igneous rocks: a review of their occurrence, mineralogy and geochemistry. Geological Society, London, Special Publications 30:1, pages 103-190.
Crossref
A.S. Venkatesh, G.V.S. Poornachandra Rao, N.T.V. Prasada Rao & M.S. Bhalla. (1987) Palaeomagnetic and geochemical studies on dolerite dykes from Tamil Nadu, India. Precambrian Research 34:3-4, pages 291-310.
Crossref
T. Ramamohana Rao, B. V. Satyanarayana Raju & M. V. Rama Raju. (1986) Palaeo-tectonic environment of the Precambrian basaltic mafic dykes on the application of chemical discriminants. Journal of Earth System Science 95:3, pages 351-361.
Crossref
A.M.J. Meijerink, D.P. Rao & J. Rupke. (1984) Stratigraphic and structural development of the Precambrian Cuddapah basin, S.E. India. Precambrian Research 26:1, pages 57-104.
Crossref
S. Bhattacharji & R.N. Singh. (1984) Thermo-mechanical structure of the southern part of the Indian Shield and its relevance to Precambrian basin evolution. Tectonophysics 105:1-4, pages 103-120.
Crossref
S.M. Mathur. (1982) Precambrian sedimentary sequences of India: Their geochronology and correlation. Precambrian Research 18:1-2, pages 139-144.
Crossref
K. Roy Chowdhury & R. B. Hargraves. (1981) Deep seismic soundings in India and the origin of continental crust. Nature 291:5817, pages 648-650.
Crossref
S.M Naqvi. (1979) Distribution of elements in the crust and mantle during the Archaean: Evidence from the Indian Shield. Chemical Geology 24:1-2, pages 1-23.
Crossref
S.M. Naqvi, V. Divakara Rao & Hari Narain. (1978) The primitive crust: Evidence from the Indian shield. Precambrian Research 6:3-4, pages 323-345.
Crossref
. 1977. Precambrian of the Northern Hemisphere. Precambrian of the Northern Hemisphere 313 360 .
Mohammed Ikramuddin & Alan M Stueber. (1976) Rb-Sr ages of Precambrian dolerite and alkaline dikes, southeast Mysore state, India. Lithos 9:3, pages 235-241.
Crossref
S.M. Naqvi, V. Divakara Rao & Hari Narain. (1974) The protocontinental growth of the Indian Shield and the antiquity of its rift valleys. Precambrian Research 1:4, pages 345-398.
Crossref
A.R. Crawford. (1974) Indo-Antarctica, Gondwanaland, and the distortion of a granulite belt. Tectonophysics 22:1-2, pages 141-157.
Crossref

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