Climate-smart harvesting and storing of water: The legacy of dhaka pits at Great Zimbabwe

Anthropocene - Tập 40 - Trang 100357 - 2022
Innocent Pikirayi1, Federica Sulas2,3, Bongumenzi Nxumalo1, Munyaradzi Elton Sagiya4, David Stott5, Søren M. Kristiansen6,3, Shadreck Chirikure7,8, Tendai Musindo9
1Department of Anthropology, Archaeology and Development Studies, University of Pretoria, South Africa
2McDonald Institute for Archaeological Research, University of Cambridge, United Kingdom
3Centre for Urban Network Evolution (UrbNet), Aarhus University, Denmark
4Department of Culture and Heritage Studies, Bindura University of Science Education, Zimbabwe
5Archaeological IT, Moesgaard Museum, Højbjerg, Denmark
6Department of Geoscience, Aarhus University, Denmark
7School of Archaeology, University of Oxford, United Kingdom
8Department of Archaeology, University of Cape Town, South Africa
9Department of History, Archaeology and Development Studies, Great Zimbabwe University, Zimbabwe

Tài liệu tham khảo

Altaweel, 2018, Water management across time: dealing with too much or too little water in Ancient Mesopotamia, 180 2018 Bernard, 2006, 213 Bratton, 1987, Drought, food and the social organization of small farmers in Zimbabwe, 213 Bullock, 1992, The role of dambos in determining river flow regimes in Zimbabwe, J. Hydrol., 134, 349, 10.1016/0022-1694(92)90042-T Chapungu, 2016, An assessment of the impact of climate change on plant species richness through an analysis of the Normalised Difference Water Index (NDWI) in Mutirikwi sub-catchment, Zimb. South Afr. J. Geomat., 5, 244, 10.4314/sajg.v5i2.11 Chikodzi, 2013, Climate change and variability in Southeast Zimbabwe: scenarios and societal opportunities, Am. J. Clim. Change, 2, 36, 10.4236/ajcc.2013.23A004 Chikumbirike, 2016, A study of archaeological charcoal from Great Zimbabwe, South Afr. Archaeol. Bull., 71, 107 Chirikure, 2013, New pathways of socio-political complexity in southern Africa, Afr. Archaeol. Rev., 30, 339, 10.1007/s10437-013-9142-3 Chirikure, 2017, Seen but not told: re-mapping Great Zimbabwe using archival data, satellite imagery and geographical information systems, J. Archaeol. Method Theory, 24, 489, 10.1007/s10816-016-9275-1 Chirikure, 2018, Elites and commoners at Great Zimbabwe: archaeological and ethnographic insights on social power, Antiquity, 92, 1056, 10.15184/aqy.2018.137 Davis-Reddy, 2017 Doneus, 2008, Archaeological prospection of forested areas using full-waveform airborne laser scanning, J. Archaeol. Sci., 35, 882, 10.1016/j.jas.2007.06.013 Doneus, 2013, Openness as visualization technique for interpretative mapping of airborne lidar derived digital terrain models, Remote Sens., 5, 6427, 10.3390/rs5126427 Ekblom, 2017, Water flow, ecological dynamics, and management in the lower Limpopo Valley: a long-term view, WIREs Water, 4, 10.1002/wat2.1228 FAO, IFAD and WFP. 2015. The State of Food Insecurity in the World, 2015. Meeting the 2015 international hunger targets: taking stock of uneven progress. Rome: FAO. Available at 〈https://www.fao.org/3/i4646e/i4646e.pdf〉. FAO, 2016 FAO, 2021 Farai, 2012, Environmental changes and farm productivity: an assessment of the Masvingo Province of Zimbabwe, Sacha J. Environ. Stud., 2, 114 Fontein, 2006, Silence, destruction and closure at great Zimbabwe: local narratives of desecration and alienation, J. South. Afr. Stud., 32, 771, 10.1080/03057070600995723 Fontein, 2006 Garlake, 1973 Gillson, 2021, Using long-term data to inform a decision pathway for restoration of ecosystem resilience, Anthropocene, 36, 10.1016/j.ancene.2021.100315 Gruber, 2009, Land-surface parameters and objects in hydrology, Dev. Soil Sci., 33, 171 Hall, 1905 Hesse, 2010, LiDAR-derived Local Relief Models–a new tool for archaeological prospection, Archaeol. Prospect., 17, 67, 10.1002/arp.374 Hiller, 2008, Residual relief separation: digital elevation model enhancement for geomorphological mapping’, Earth Surf. Process. Landf., 33, 2266, 10.1002/esp.1659 Holmgren, 2006, Climate change in southern and eastern Africa during the past millennium and its implications for societal development, Environ., Dev. Sustain., 8, 185, 10.1007/s10668-005-5752-5 Isendahl, 2019, Applied perspectives on precolumbian maya water management systems: what are the insights for water security?, 506 2007 Kokalj, 2017 Kokalj, 2011, Application of sky-view factor for the visualization of historic landscape features in lidar-derived relief models, Antiquity, 85, 263, 10.1017/S0003598X00067594 Mazvimavi, 2010, Investigating changes over time of annual rainfall in Zimbabwe, Hydrol. Earth Syst. Sci., 14, 2671, 10.5194/hess-14-2671-2010 Musemwa, 2021, Urban struggles over water scarcity in harare, Dædalus, 150, 27 Musindo, 2019 Mutschinski, 2021, The African Water Vision 2025: its influence on water governance in the development of Africa's water sector, with an emphasis on rural communities in Kenya: a review, Water Policy, 23, 838 Nxumalo, 2019, Integrating geoarchaeological approaches and rainfall modelling as a proxy for hydrological changes in the Shashe-Limpopo basin, South Africa, South Afr. Archaeol. Bull., 74, 67 Olaya, 2009, Geomorphometry in SAGA, Dev. Soil Sci., 33, 293 Pikirayi, 2006, The demise of Great Zimbabwe, AD 1420–1550: an environmental re-appraisal, 31 Pikirayi, 2017, Ingombe Ilede and the demise of Great Zimbabwe, Antiquity, 91, 1085, 10.15184/aqy.2017.95 Pikirayi, 2019, Local narratives, regional histories and the demise of Great Zimbabwe, 131 Pikirayi, 2016, Great Zimbabwe’s water, WIREs Water, 3, 195, 10.1002/wat2.1133 Remigius, 2010, Urban domestic water crisis in Zimbabwe: the case of Kadoma city, J. Sustain. Dev. Afr., 12, 8 Rockström, 2014, The unfolding water drama in the Anthropocene: towards a resilience-based perspective on water for global sustainability, Ecohydrology, 7, 1249, 10.1002/eco.1562 Rodell, 2018, Emerging trends in global freshwater availability, Nature, 557, 651, 10.1038/s41586-018-0123-1 2019 Sadr, 2016, A comparison of accuracy and precision in remote sensing stone-walled structures with Google earth, high resolution aerial photography and LiDAR; a case study from the South African Iron Age, Archaeol. Prospect., 23, 95, 10.1002/arp.1532 Scarborough, 2003 Scoones, 2019, Irrigating Zimbabwe after land reform: the potential of farmer-led systems, Water Altern., 12, 88 Sinclair, 2019, Beyond rhetoric: towards a framework for an applied historical ecology of urban planning Stott, 2018, Mapping an ancient city with a century of remotely sensed data, Proc. Natl. Acad. Sci. U. S. A., 115, E5450, 10.1073/pnas.1721509115 2018 Summers, 1971 Tvedt, 2015, . UNECA 2003. Africa Water Vision for 2025: Equitable and Sustainable Use of Water for Socioeconomic Development. United Nations. Economic Commission for Africa; United Nations. Economic Commission for Africa; African Union Commission; African Development Bank, Addis Ababa. Available at: 〈http://hdl.handle.net/10855/5488〉. Wyatt, 2014, The scale and organization of ancient Maya water management, WIREs Water, 1, 449, 10.1002/wat2.1042 ZPP=Zimbabwe Peace Project, 2019. The Water Crisis (Fact Sheet No. 2). Available online: 〈https://reliefweb.int/report/zimbabwe/water-crisis-fact-sheet-no-2–2019〉 (Accessed 3 December 2021).