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dc.contributor.authorJones, Penelope Jean
dc.date.accessioned2018-01-18T09:19:17Z
dc.date.available2018-01-18T09:19:17Z
dc.date.issued2018-01-17
dc.date.submitted2018-01-17
dc.identifier.urihttps://www.repository.cam.ac.uk/handle/1810/270736
dc.description.abstractThis thesis investigates the relationship between climate, agriculture and social change in South Asia’s Bronze Age urban Indus Civilisation. Specifically, my research tests the hypothesis that an abrupt weakening of the Indian Summer Monsoon ca 2100 cal BC led to increasing crop water stress, and hence potentially contributed to the Civilisation’s decline by reducing food supply. This hypothesis is frequently invoked in discussions of the Civilisation’s end, yet until now, has not been empirically tested. Using material excavated from several Indus settlements, this study uses a novel combination of isotopic techniques to directly test the connection between climate change and agricultural stress. These techniques are first, oxygen isotope analysis of faunal bones and teeth; and second, stable carbon isotope analysis of crop remains. The oxygen analyses provide detailed records of monsoon intensity at a local, human scale, while the carbon analyses provide an empirical test of whether crop water stress increased. Applied in parallel across a diverse suite of Indus sites, these techniques together provide an archaeologically and ecologically-nuanced analysis of climatic impacts. The archaeological analyses are supported by a methodological study, which investigates how water status relates to the stable carbon isotope signature in barley (Hordeum vulgare) and the Indian jujube (Ziziphus mauritiana) along a climatic transect in north-western India today. Overall, the isotopic results suggest that at the sites sampled here, climate change probably had minimal impacts on crop water availability. This does not necessarily mean that climate change had no impacts on agriculture across the greater Indus sphere, and indeed there are hints that there may have been climatic stress in more vulnerable settings. However, at the sites studied here, any hydrological consequences of climate change—including the 4.2 ka event—appear to have had neither a lasting nor a pervasive impact on the adequacy of crop water supply. This is an important finding, and necessitates a clear refinement of how we think about climatic sensitivity, climatic vulnerability, and climatic impacts across—and indeed beyond—the greater Indus.
dc.description.sponsorshipFinancial support was provided by the Rae and Edith Bennett Travelling Scholarship, the Food Globalisation in Prehistory Project (ERC), the Geographical Club, Smuts Fund, Clare Hall, British Academy, Indian Arts and Cultural Heritage Trust UK, Ridgeway Venn Fund, Dorothy Garrod Fund, and the National Radiocarbon Facility.
dc.language.isoen
dc.rightsAttribution-NonCommercial-ShareAlike 4.0 International
dc.rights.urihttps://creativecommons.org/licenses/by-nc-sa/4.0/
dc.subjectclimate change
dc.subjectIndus Civilisation
dc.subjectIndus archaeology
dc.subjectarchaeology
dc.subjectstable carbon isotope analysis
dc.subjectstable oxygen isotope analysis
dc.subjectIndian Summer Monsoon
dc.subjectpalaeoclimate
dc.subjectwater stress
dc.subjectfood security
dc.titleClimate change, water stress and agriculture in the Indus Civilisation, 3000-1500 BC
dc.typeThesis
dc.type.qualificationlevelDoctoral
dc.type.qualificationnameDoctor of Philosophy (PhD)
dc.publisher.institutionUniversity of Cambridge
dc.publisher.departmentDepartment of Archaeology and Anthropology
dc.date.updated2018-01-18T01:35:11Z
dc.identifier.doi10.17863/CAM.17706
dc.contributor.orcidJones, Penelope Jean [0000-0002-4880-6711]
dc.publisher.collegeClare Hall
dc.type.qualificationtitlePhD in Archaeology
cam.supervisorJones, Martin Kenneth
cam.supervisorO'Connell, Tamsin C.
cam.supervisorPetrie, Cameron Andrew
rioxxterms.freetoread.startdate2019-01-18


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