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Saraswati River in northern India (Haryana) and its role in populating the Harappan civilization sites—A study based on remote sensing, sedimentology, and strata chronology

Bibliographic Data

ID12430256
AuthorsAkshey Rajan Chaudhri (0000-0001-7307-9977, Centre of Excellence for Research on the Saraswati River Kurukshetra University Kurukshetra Haryana India), Sundeep Chopra (Inter University Accelerator Centre New Delhi Delhi India), Pankaj Kumar (0000-0002-5625-8145, Inter University Accelerator Centre New Delhi Delhi India), Rajesh Ranga (Centre of Excellence for Research on the Saraswati River Kurukshetra University Kurukshetra Haryana India), Yoginder Singh (Department of Geology Kurukshetra University Kurukshetra Haryana India), Subhash Rajput (Centre of Excellence for Research on the Saraswati River Kurukshetra University Kurukshetra Haryana India), Vikram Sharma (0000-0002-8655-7752, Department of Geology Kurukshetra University Kurukshetra Haryana India), Veerendra Kumar Verma (Centre of Excellence for Research on the Saraswati River Kurukshetra University Kurukshetra Haryana India), Rajveer Sharma (0000-0003-0454-4753, Inter University Accelerator Centre New Delhi Delhi India)
Year2021
Volume28
Issue4
Pages565-582
Publication date2021-06-13
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueArchaeological Prospection (JOURNAL)
Journal identifiersISSN: 1075-2196 • E-ISSN: 1099-0763
PublisherWiley (PUBLISHER • GB)
DOI10.1002/arp.1829
OpenAlexW3171232596
LanguageEN
Citations received2
References cited53

The Saraswati River used to flow from the glaciated peaks of the Himalaya to the Arabian sea, covering a distance of about 1800 km. It possibly sustained the Harappan civilization in the Indian subcontinent. This river has been studied as a part of the Ghaggar–Satluj–Hakra–Nara channel system in India and Pakistan. This study investigated its independent existence and evolution in the Himalayan foothill terrain and the proximal alluvial plains. Use of satellite imagery, shuttle radar topography mission data, accelerator mass spectrometry 14 C dating and optically stimulated luminescence chronology is being made to identify the possible palaeo‐path of this ancient river and to characterize the trench sediment log architecture of the Saraswati River palaeochannels in northern India (Haryana). Our investigations reveal that this river formed a dense web of interconnecting channels which are continuously networked for more than 2,984 km in Haryana and their individual floodplain width varies from 1.5 to 13 km. The Harappan settlements in Haryana and Rajasthan nucleated and prospered in the fertile channel bars and interfluves of this river system. Majority of these habitation sites were located within a radius of less than 500 m from these palaeo‐water channel networks. Enormous amount of water was flowing through this channel network until BC 11,147. Sediment characteristics and their chronology reveal that flow of water in the river channel decreased with time as the glacial cover diminished. The varying thickness of clay beds in sediment logs is indicative of the fluctuations in water flow possibly as a consequence of terrain slope modifications and consequent gradual channel avulsion, climate change, and global drought events. The flow of water continued through the Himalayan foothill input channels of the palaeo‐Saraswati River in Haryana until AD 1402

Alluvium · Archaeology · Channel (broadcasting · Chronology · Floodplain · Fluvial · Geography · Geomorphology · Hydrology (agriculture · Palaeochannel · Sediment · Structural basin · Geological formations and processes · Geology and Paleoclimatology Research · Hydrology and Sediment Transport Processes · Geology · Paleontology

  • Inter-University Accelerator Centre, New Delhi (Iuacd) Radiocarbon Date List I

    Open Access•Rajveer Sharma, Pankaj Kumar et al.•Radiocarbon•2020

  • Inter-University Accelerator Centre, New Delhi (Iuacd) Radiocarbon Date List Ii

    Open Access•Rajveer Sharma, Pankaj Kumar et al.•Radiocarbon•2021

  • The role of climate and tectonics in aggradation and incision of the Indus River in the Ladakh Himalaya during the late Quaternary

    Open Access•Anil Kumar, Pradeep Srivastava•Quaternary Research•2017

  • Fashion and phases of late Pleistocene aggradation and incision in the Alaknanda River Valley, western Himalaya, India

    Open Access•Pradeep Srivastava, Jayant K Tripathi et al.•Quaternary Research•2008

  • An Introduction to Optical Dating

    M J Aitken•An introduction to optical dating•1998

  • Abrupt changes in the Asian southwest monsoon during the Holocene and their links to the North Atlantic Ocean

    Open Access•Anil K Gupta, David M Anderson et al.•Nature•2003

  • Abrupt weakening of the summer monsoon in northwest India 4100 yr ago

    Yama Dixit, David A Hodell et al.•Geology•2014

  • High-Resolution Holocene Environmental Changes in the Thar Desert, Northwestern India

    Open Access•Yehouda Enzel, Lisa L Ely et al.•Science•1999

  • The Shuttle Radar Topography Mission

    Open Access•T G Farr, P A Rosen et al.•Reviews of Geophysics•2007

  • Kilimanjaro Ice Core Records

    Open Access•Lonnie G Thompson, Ellen Mosley-Thompson et al.•Science•2002

  • Fluvial landscapes of the Harappan civilization

    Open Access•Liviu Giosan, Peter D Clift et al.•Proceedings of the National…•2012

  • The Genesis and Collapse of Third Millennium North Mesopotamian Civilization

    Open Access•H Wei, H Weiss et al.•Science•1993

  • What Drives Societal Collapse?

    Open Access•H Wei, Harvey Weiss et al.•Science•2001

  • Cosmic ray contributions to dose rates for luminescence and ESR dating

    Open Access•J R Prescott, J T Hutton•Radiation Measurements•1994

  • Luminescence dating of quartz using an improved single-aliquot regenerative-dose protocol

    Open Access•Andrew S Murray, A G Wintle•Radiation Measurements•2000

  • Prehistoric River Saraswati, Western India

    Open Access•K S Valdiya•Prehistoric River Saraswati,…•2017

  • Accelerator mass spectrometry

    Open Access•T W Linick, P E Damon et al.•Quaternary International•1989

  • Late-Holocene climate response and glacial fluctuations revealed by the sediment record of the monsoon-dominated Chorabari Lake, Central Himalaya

    Open Access•Tanuj Shukla, Manish Mehta et al.•The Holocene•2020

  • Archaeobotanical evidence of millets in the Indian subcontinent with some observations on their role in the Indus civilization

    Open Access•Anil K Pokharia, Jeewan Singh Kharakwal et al.•Journal of Archaeological Science•2013

  • Rang Mahal, The Swedish Archaeological Expedition to India, 1952-1954

    Olov R T Janse, Hanna Rydh et al.•Harvard Journal of Asiatic Studies•1960

  • Art. III.—The Saraswatī and the Lost River of the Indian Desert

    Open Access•C F Oldham, Chas Oldham•Journal of the Royal Asiatic…•1893

  • Optical Dating of Single and Multiple Grains of Quartz From Jinmium Rock Shelter, Northern Australia

    Open Access•R F Galbraith, Richard G Roberts et al.•Archaeometry•1999

  • Adaptation to Variable Environments, Resilience to Climate Change

    C A Petrie, Ravindra Singh et al.•Current Anthropology•2017

  • The Lost Courses of the Saraswati River in the Great Indian Desert

    Bimal C Ghose, Bimal Ghose et al.•Geographical Journal•1979

  • The Drishadvati River System of India

    Amal Kar, Bimal Ghose et al.•Geographical Journal•1984

  • A Survey of Ancient Sites along the "Lost" Sarasvati River

    Aurel Stein•Geographical Journal•1942

Unique citing works2
Citations per year0,33
Citation span2020 - 2021 (2)
Citation velocityhistorical
Highly citedNo
Citation typesNeutral: 2

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