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19 - A millennium of rainfall, settlement and water management at Humayma, southern Jordan, c. 2,050–1,150 BP (100 BC to AD 800)

from Part IV - Human settlement, climate change, hydrology and water management

Published online by Cambridge University Press:  26 April 2011

Rebecca Foote
Affiliation:
University of Reading
Andrew Wade
Affiliation:
University of Reading
Mohammed El Bastawesy
Affiliation:
National Authority for Remote Sensing and Space Sciences
John Peter Oleson
Affiliation:
University of Victoria
Steven Mithen
Affiliation:
University of Reading
Steven Mithen
Affiliation:
University of Reading
Emily Black
Affiliation:
University of Reading
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Summary

ABSTRACT

Humayma is an extensive archaeological site located in the hyper-arid region of southern Jordan. It was principally occupied between the Nabataean and early Islamic periods, c.100 BC to 800 AD, and provides evidence for the most complex water management system known outside of Petra. Since 1986 John Oleson has led extensive survey and excavation at Humayma, documenting the hydraulic structures and examining the various settlement remains that include a Nabataean cultic centre, Roman fort and early Islamic qasr. By making estimates of annual precipitation, surface runoff, water storage capacity and the extent of cultivated land, he has recently proposed that a total of 448 persons, 3,008 ovicaprids and 300 camels or donkeys could have been sustained within the Humayma catchment. This chapter draws on Oleson's research to develop a water balance model for Humayma to further explore the relationship between rainfall, runoff, storage capacity, agriculture and population levels. To do so, it reviews the textual and archaeological evidence for the settlement, undertakes an evaluation of the site's catchment using remote-sensing and digital elevation modelling, and then undertakes multiple simulations of the hydrological and hydraulic systems under a range of rainfall scenarios. Its results are in broad agreement with Oleson's estimates for past population levels, although various additional constraints on population are highlighted. Overall, a more thorough understanding of the hydrological dynamics of Humayma is developed.

Type
Chapter
Information
Water, Life and Civilisation
Climate, Environment and Society in the Jordan Valley
, pp. 302 - 334
Publisher: Cambridge University Press
Print publication year: 2011

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References

Allen, R. G., Pereira, L. S., Raes, D. and Smith, M. (1998) Crop Evapotranspiration – Guidelines for Computing Crop Water Requirements. FAO Irrigation and drainage papers 56. Rome: Food and Agriculture Organisation of the United Nations.Google Scholar
Alt, A. (1936) Der südliche Endabschnitte der römischen Strasse von Bostra nach Aila Zeitschrift des Deutschen. Palästina-Vereins: 92–111.Google Scholar
,Anonymous (1971) Akhbār al-dawlah al-‘abbāsīyah, ed. al-Dūrī, A. a.-A. and al-Muṭṭalabī, A. a.-J.. Beirut.Google Scholar
Broshi, M. (1980) The population of western Palestine in the Roman–Byzantine Period. Bulletin of the American Schools of Oriental Research 236: 1–10.Google Scholar
Bruins, H. J. (1986) Desert environment and agriculture in the Central Negev and Kadesh–Barnea during historical times. Unpublished PhD thesis, Agricultural University of Wageningen, MIDBAR Foundation.Google Scholar
Cordova, C. (2007) Millennial Landscape Change in Jordan: Geoarchaeology and Cultural Ecology. Tucson: University of Arizona Press.Google Scholar
Di Segni, L. (2004) The Beersheba Tax Edict reconsidered in the light of a newly discovered fragment. Scripta Classica Israelica 23: 131–158.
Donahue, J. (1985) Hydrologic and topographic change during and after Early Bronze occupation at Bab edh-Dhra and Numeira. In Studies in the History and Archaeology of Jordan II, ed. Hadidi, A.. Amman: Department of Antiquities pp. 131–140.Google Scholar
Dunne, T. (1978) Field studies in hillslope flow processes. In Hillslope Hydrology, ed. Kirby, M. J. and Chorley, R. J.. Chichester: Wiley pp. 227–293.Google Scholar
Eadie, J. W. and Oleson, J. P. (1986) The water-supply systems of Nabataean and Roman Humayma. Bulletin of the American Schools of Oriental Research 262: 49–76.CrossRefGoogle Scholar
Evenari, M., Shanan, L. and Tadmor, N. (1982) The Negev, Challenge of a Desert. Cambridge, MA: Harvard University Press.CrossRefGoogle Scholar
Frank, F. (1934) Aus der Araba I: Reiseberichte. Zeitschrift des Deutschen. Palästina-Vereins 57: 191–280.Google Scholar
Geer, R. M. (1954) Diodorus of Sicily. Cambridge, MA: Harvard University Press.Google Scholar
Glueck, N. (1935) Explorations in Eastern Palestine. Annual of the American Schools of Oriental Research 2: 1934–1935.Google Scholar
Goldberg, P. (1994) Interpreting Late Quaternary continental sequences in Israel. In Late Quaternary Chronology and Palaeoclimates of the Eastern Mediterranean, ed. Bar-Yosef, O. and Kra, R. S.. Tucson, AZ: Radiocarbon pp. 89–102.Google Scholar
Graf, D. (1983) The Nabateans and the Hisma: in the footsteps of Glueck and beyond. In The Word of the Lord Shall Go Forth: Essays in Honor of David Noel Freedman, ed. Meyers, C. L. and O'Connor, M.. Winona Lake, IN: Eisenbrauns pp. 647–664.Google Scholar
Groom, N. (1981) Frankincense and Myrrh: A Study of the Arabian Incense Trade. London: Longman.Google Scholar
Helms, S. (1981) Jawa. London: Methuen.Google Scholar
Hill, J. B. (2004) Land use and an archaeological perspective on socio-natural studies in the Wadi al-Hasa, west-central Jordan. American Antiquity 69: 389–412.CrossRefGoogle Scholar
Hillel, D. (1982) Negev: Land, Water and Life in a Desert Environment. New York: Praeger.Google Scholar
Hunt, C. O., Elrishi, H. A., Gilbertson, D. D.et al. (2004) Early-Holocene environments in the Wadi Faynan, Jordan. The Holocene 14: 921–930.CrossRefGoogle Scholar
Jenson, S. K. and Domingue, J. O. (1988) Extracting topographic structure from digital elevation data for geographical information system analysis. Photogrammetric Engineering and Remote Sensing 54: 1593–1600.Google Scholar
Jones, H. L. and Sterret, J. R. S. (1946–1963) The Geography of Strabo. Michigan: Heinemann.Google Scholar
,Jordan Meteorological Department (1971) Climatic Atlas of Jordan. Amman: Hashemite Kingdom of Jordan, Ministry of Transport, Meteorological Department.Google Scholar
Kedar, Y. (1957) Ancient agriculture at Shivtah in the Negev. Israel Exploration Journal 7: 178–189.Google Scholar
Ker, A. (1995) Farming Systems of the African Savanna – A Continent in Crisis. Ottawa, Canada: International Development Research Centre.Google Scholar
Laborde, L. d. (1830) Voyage de l'Arabie Pétrée. Paris: Girard.Google Scholar
Maughan, W. C. (1874) The Alps of Arabia: Travels in Egypt, Sinai, Arabia and the Holy Land, 2nd Edition. London: H. S. King.Google Scholar
Morris, E. J. (1842) Notes of a Tour through Turkey, Greece, Egypt, Arabia Petraea, to the Holy Land. Philadelphia: Carey and Hart.Google Scholar
Musil, A. (1926) The Northern Hedjaz. New York: American Geographical Society Oriental Explorations and Studies.Google Scholar
,Natural Resources Authority – Amman (1977) National Water Master Plan of Jordan. Amman: Natural Resources Authority, in cooperation with the German Agency for Technical Cooperation, Federal Republic of Germany.Google Scholar
Oleson, J. P. (1986) The Humayma Hydraulic Survey: preliminary report of the 1986 season. Annual of the Department of Antiquities of Jordan 30: 253–260.Google Scholar
Oleson, J. P. (1988) The Humayma Hydraulic Survey: preliminary report of the 1987 season. Annual of the Department of Antiquities of Jordan 32: 155–169.Google Scholar
Oleson, J. P. (1990) The Humayma Hydraulic Survey: preliminary report of the 1989 season. Annual of the Department of Antiquities of Jordan 34: 285–311.Google Scholar
Oleson, J. P. (1991) Aqueducts, cisterns, and the strategy of water supply at Nabataean and Roman Auara (Jordan). In Future Currents in Aqueduct Studies, ed. Hodge, A. T.. Leeds: Francis Cairns.Google Scholar
Oleson, J. P. (1992) The water-supply system of Ancient Auara: preliminary results of the Humeima Hydraulic Survey. In Studies in the History and Archaeology of Jordan IV, ed. Zaghoul, M.Amman: Department of Antiquities pp. 269–276.Google Scholar
Oleson, J. P. (1995) The origins and design of Nabataean water-supply systems. In Studies in the History and Archaeology of JordanV, ed. Bisheh, G.. Amman: Department of Antiquities pp. 707–719.Google Scholar
Oleson, J. P. (1997a) Humeima. In Oxford Encyclopedia of Archaeology in the Near East, ed. Meyers, E.. Oxford: Oxford University Press pp. 121–122.Google Scholar
Oleson, J. P. (1997b) Landscape and cityscape in the Hisma: the resources of Ancient Al-Humayma. In Studies in the History and Archaeology of JordanVI, ed. Bisheh, G.. Amman: Department of Antiquities pp. 175–188.Google Scholar
Oleson, J. P. (2001a) King, emperor, priest, and caliph: cultural change at Hawara (Ancient al-Humayma) in the first millennium AD. In Studies in the History and Archaeology of Jordan VII, ed. Bisheh, G.. Amman: Department of Antiquities pp. 569–580.Google Scholar
Oleson, J. P. (2001b) Water Supply in Jordan through the ages. In The Archaeology of Jordan, ed. MacDonald, B., Adams, R. and Bienkowski, P.. Sheffield: Sheffield University Press pp. 603–624.Google Scholar
Oleson, J. P. (2004) ‘Romanization' at Hawara (al-Humayma)? The character of ‘Roman' culture at a desert fortress. In Studies in the History and Archaeology of Jordan VIII. Amman: Department of Antiquities pp. 353–360.Google Scholar
Oleson, J. P. (2007a) From Nabataean king to Abbasid caliph: the enduring attraction of Hawara/al-Humayma, a multi-cultural site in Arabia Petraea. In Crossing Jordan: North American Contributions to the Archaeology of Jordan, ed. Levy, T. E., Daviau, P. M., Younker, R. W. and Sha'er, M.. London: Equinox Publishing pp. 447–456.Google Scholar
Oleson, J. P. (2007b) Nabataean water supply, irrigation and agriculture: an overview. In The World of the Nabataeans, ed. Poltis, K. D.. Stuttgart: Franz SteinerVerlag pp. 217–249.Google Scholar
Oleson, J. P. (2008) Social and technological strategies for the design of Nabataean water-supply systems in hyper-arid environments. In L'eau Comme Patrimoine, de la Méditerranée à l'Amerique du Nord, ed. Hermon, E.. Québec: Les Presses de L'Université Laval.Google Scholar
Oleson, J. P. (2010) Humayma Excavation Project, final report. I: The Site and the water-supply system. Annual of the American Schools of Oriental Research, 15. Boston: ASOR.Google Scholar
Oleson, J. P., Amr, K., Foote, R.et al. (1999) Preliminary report of the Al-Humayma Excavation Project, 1995, 1996, 1998. American Schools of Oriental Research Excavation Reports 43: 411–450.Google Scholar
Oleson, J. P., Amr, K., Schick, R. and Foote, R. (1995) Preliminary report of the Humeima Excavation Project, 1993. American Schools of Oriental Research Excavation Reports 39: 317–354.Google Scholar
Oleson, J. P., Amr, K., Schick, R., Foote, R. and Somogyi-Csizmazia, J. (1993) The Humeima Excavation Project, Jordan: preliminary report of the 1991–1992 seasons. American Schools of Oriental Research Excavation Reports 37: 461–502.Google Scholar
Oleson, J. P., Baker, G., Bruijn, E.et al. (2003) Preliminary report of the Al-Humayma Excavation Project, 2000, 2002. American Schools of Oriental Research Excavation Reports 47: 411–450.Google Scholar
Oleson, J. P., Reeves, M. B., Baker, G.et al. (2008) Preliminary report on excavations at al-Humayma, Ancient Hawara, 2004 and 2005. American Schools of Oriental Research Excavation Reports 52: 309–342.Google Scholar
Oleson, J. P., Reeves, M. B. and Fisher, B. J. (2002) New dedicatory inscriptions from Humayma (Ancient Hawara), Jordan. Zeitschrift für Papyrologie und Epigraphik 140: 103–121.Google Scholar
Osborn, G. and Dunford, M. (1981) Geomorphological processes in the inselberg region of S.W. Jordan. Palestine Exploration Quarterly 113: 1–17.CrossRefGoogle Scholar
Puigdefàbregas, J. and Sánchez, G. (1996) Geomorphological implications of vegetation patchiness on semi-arid slopes. In Advances in Hillslope Processes, ed. Anderson, M. G. and Brooks, S. M.. Chichester: Wiley pp. 1027–1060.Google Scholar
Ramsey, J. (2004) An analysis of the archaeobotanical remains from Humaima, Jordan. Unpublished report.
,The Sphere Project (2004) Humanitarian Charter and Minimum Standards in Disaster Response. Geneva: Published online. (http://www.sphereproject.org/)Google Scholar
Wheater, H. S. (2002) Hydrological processes in arid and semi-arid areas. In Hydrology of Wadi Systems, ed. Wheater, H. S. and Al-Weshah, R. A.. Paris: UNESCO pp. 5–22.Google Scholar
Whitehead, P. G., Smith, S. J., Wade, A. J.et al. (2008) Modelling of hydrology and potential population levels at Bronze Age Jawa, Northern Jordan: a Monte Carlo approach to cope with uncertainty. Journal of Archaeological Science 35: 517–529.CrossRefGoogle Scholar
Williams, J. and Bonell, M. (1988) The influence of scale of measurement on the spatial and temporal variability of the Philip infiltration parameters – an experimental study in an Australian savannah woodland. Journal of Hydrology 104: 33–51.CrossRefGoogle Scholar
Yair, A. and Kossovsky, A. (2002) Climate and surface properties: hydrological response of small arid and semi-arid water sheds. Geomorphology 42: 43–57.CrossRefGoogle Scholar

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