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Neolithic adaptation and the Holocene functioning of Tertiary palaeodrainages in southern Egypt and northern Sudan

Published online by Cambridge University Press:  02 January 2015

William P. Mchugh
Affiliation:
EPIX. Inc., 571 Coal Street, Wilkinsburg PA 15221, USA
Gerald G. Schaber
Affiliation:
US Geological Survey, 2255 N Gemini Drive, Flagstaff AZ 86001, USA
Carol S. Breed
Affiliation:
US Geological Survey, 2255 N Gemini Drive, Flagstaff AZ 86001, USA
John F. McCauley
Affiliation:
US Geological Survey, 2255 N Gemini Drive, Flagstaff AZ 86001, USA

Extract

The ‘radar rivers’ of the southern Eastern Sahara are systems of aggraded valleys containing inset drainage channels, now entirely obscured by wind-blown sand in the dry and hostile open desert. These features, first recognized on radar images, are remnants of the very different and moister landscapes of the Pleistocene and early Holocene. Proof of their attraction for early human settlement are the Acheulean artefacts that are found buried in alluvium that completely fills these old valleys and at the surface, along with Neolithic sites. The distribution of these sites follows, with good reason, the order of the radar channels.

Type
Papers
Copyright
Copyright © Antiquity Publications Ltd 1989

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References

Banks, K.M. 1984. Climates, cultures and cattle: the Holocene archaeology of the Eastern Sahara. Dallas (TX): Southern Methodist University, Department of Anthropology.Google Scholar
Breed, C.S., Mccauley, J.F. & Davis, P.A.. 1987. Sand sheets of the Eastern Sahara and ripple blankets on Mars, in Frostick, L. & Reid, I. (ed.), Desert sediments -ancient and modern: 3379. London: London Geological Society. Special Publication.Google Scholar
Brookes, I.A. 1983. Dakhleh Oasis - a geoarchaeological reconnaissance, Society for the Study of Egyptian Antiquities Journal 13 (3): 16787.Google Scholar
Brookes, I.A. 1987 Holocene sediments of the Dakhla Oasis region, S[outh] C[entral] Egypt. Paper presented at the Society for American Archaeology annual meeting, Toronto.Google Scholar
Butzer, K.W. 1959. Environment and human ecology in Egypt during Predynastic and early Dynastic times, Bulletin de la Société de Géographie d’Égypte 22: 4387.Google Scholar
Butzer, K.W. 1975. Patterns of environmental change in the Near East during late Pleistocene and early Holocene times, in Wendorf, F. & Marks, A.E. (ed.), Problems in prehistory; North Africa and the Levant: 389404. Dallas (TX): Southern Methodist University Press.Google Scholar
Butzer, K. & Hansen, C.L.. 1968. Desert and river in Nubia: geomorphology and prehistoric environments at the Aswan Reservoir. Madison (WI): University of Wisconsin Press.Google Scholar
Caton-Thompson, G. 1952. Kharga Oasis in prehistory. London: Athlone Press.Google Scholar
Close, A.E. (ed.). 1987. Prehistory of arid North Africa: essays in honor of Fred Wendorf. Dallas (TX): Southern Methodist University Press.Google Scholar
El-Baz, F. & Maxwell, T.A. (ed.). 1982. Desert landforms of southwest Egypt: a basis for comparison with Mars. Washington (DC): National Aeronautics and Space Administration. CR-3611.Google Scholar
Gautier, A. 1982. Neolithic faunal remains in the Gilf Kebir and Abu Hussein dunefieid, Western Desert, in El-Baz, & Maxwell, (ed.): 3359.Google Scholar
Gautier, A. 1987. Prehistoric men and cattle in North Africa: a dearth of data and a surfeit of models, in Close (ed.): 16387.Google Scholar
Goudie, A.S. 1983. Calcrete, in Goudie, A.S. & Pye, K. (ed.), Chemical sediments and geomorphology: 93131. London: Academic Press.Google Scholar
Hassan, F.A. 1985. Radiocarbon chronology of Neolithic and predynastic sites in Upper Egypt and the delta, African Archaeological Review 3: 95116.CrossRefGoogle Scholar
Haynes, C.V. Jr. 1980. Geological evidence of pluvial climates in the Nabta area of the Western Desert, Egypt, in Wendorf, & Schild, : 35371.Google Scholar
Haynes, C.V. Jr. 1982a. Great Sand Sea and Selima sand sheet, Eastern Sahara: geochronology of desertification, Science 217: 62933.CrossRefGoogle ScholarPubMed
Haynes, C.V. Jr. 1982b. The Darbel-Arba’in Desert: a product of Quaternary climatic change, in El-Baz, & Maxwell, (ed.): 91117.Google Scholar
Haynes, C.V. Jr. 1984. Preliminary report of the 1984 field season. Report to the National Science Foundation, Smithsonian Institution, National Geographic Society, and US Geological Survey on Western Desert Quaternary Studies.Google Scholar
Haynes, C.V. Jr. 1987a. Report to the National Science Foundation, Smithsonian Institution, and National Geographic Society.Google Scholar
Haynes, C.V. Jr. 1987b. Holocene migration rates of the Sudano-Sahelian wetting front, Arba’in Desert, Eastern Sahara, in Close, (ed,): 6984.Google Scholar
Haynes, C.V. Jr. & Haas, H.. 1980. Radiocarbon evidence for Holocene recharge of groundwater, Western Desert, Egypt, Radiocarbon 22: 70517.CrossRefGoogle Scholar
Haynes, C.V. Jr., Mehrínger, P.J Jr., Johnson, D.L., Haas, H., Muller, A.B:, El Zaghloul, El S, Swedan, A. & Wyerman, T.A.. 1987. Evidence for the first nuclearage recharge of shallow groundwater, Arba’in Desert, Egypt, National Geographic Research 3: 4318.Google Scholar
Hester, J.J. & Hobler, P.M.. 1969. Prehistoric settlement patterns in the Libyan Desert. Salt Lake City (UT): University of Utah Press. Anthropological Papers 92, Nubian Series 4.Google Scholar
Isaac, E. 1962. On the domestication of cattle, Science 137: 195204.CrossRefGoogle ScholarPubMed
Issawi, B. & El Hinnawi, M.. 1984. Contributions to the study of the playas in the southeastern part of the Western Desert of Egypt, in Wendorf et al.: 418.Google Scholar
Issawi, B. & Mccauley, J.F.. In press. The Cenozoic rivers of Egypt, Episodes.Google Scholar
Kröpelin, S. 1987. Palaeoclimatic evidence from early to mid-Holocene playas in the Gilf Kebir (Southwest Egypt), Palaeoecology of Africa and the Surrounding Islands 18: 189208.Google Scholar
Kuper, R. 1981. Untersuchungen zur Besiedlungsgeschichte der östlichen Sahara, Beiträge zur All-gemeinen und Vergleichenden Archaologie 3: 21575.Google Scholar
Linick, T.W., Jull, A.J.T. Tollin, L.J. & Donahue, D.J.. 1986. Operation of the NSF-Arizona Accelerator Facility for radioisotope analysis and results from selected collaborative research projects, Radiocarbon 28: 52233.CrossRefGoogle Scholar
Mccauley, J.F., Schaber, G.G. Breed, C.S., Grolier, M.J., Haynes, C.V. Issawi, B. Elachi, C. & Blom, R.. 1982. Subsurface valleys and geoarchaeology of the Eastern Sahara revealed by shuttle radar, Science 218: 100420.Google Scholar
Mccauley, J.F., Breed, C.S. Schaber, G.G. Mchugh, W.P. Issawi, B. Haynes, C.V. Jr., Grolier, M.J. & El Kilani, A.. 1986. Paleodrainages of the Eastern Sahara -the radar rivers revisited (SIR A/B implications for a mid-Tertiary transAfrican drainage system), IEEE Transactions on Geoscience and Remote Sensing GE-24 (4): 62448.CrossRefGoogle Scholar
Mccauley, J.F., Breed, C.S. & Schaber, G.G.. 1986. Megageomorphology of the radar rivers of the Eastern Sahara, Proceedings of the Second Space-borne Imaging Radar Symposium, 28–30 April, Jet Propulsion Laboratory Publication 86–26: 2535.Google Scholar
Mchugh, W.P. 1971. Late prehistoric cultural adaptation in the southeastern Libyan Desert. Unpublished Ph.D dissertation, University of Wisconsin.Google Scholar
Mchugh, W.P. 1974. Cattle pastoralism in Africa, a model for interpreting archaeological evidence from the Eastern Sahara Desert, Arctic Anthropology 11 (Supplement): 23644.Google Scholar
Mchugh, W.P. 1982. Archaeological investigations in the Gilf Kebir and the Abu Hussein dunefield, in El-Baz, & Maxwell, (ed.): 30134.Google Scholar
Mchugh, W.P., Mccauley, J.F. Haynes, C.V. Jr., Breed, C.S. & Schaber, G.G.. 1988. Paleorivers and geoarchaeology in the southern Egyptian Sahara, Geoarchaeology 3(1): 140.Google Scholar
Mchugh, W.P., Breed, C.S. Schaber, G.G. Mccauley, J.F. & Szabo, B.J.. 1989. Acheulian sites along the ‘radar rivers’, southern Egyptian Sahara, Journal of Field Archaeology 15: 36179.Google Scholar
Myers, O.H. 1939. The Sir Robert Mond expedition of the Egypt Exploration Society, Geographical Journal 93: 28791.Google Scholar
Pachur, H.-J. & Röper, H.-P.. 1984. The Libyan (Western) Desert and northern Sudan during the late Pleistocene and Holocene, in Klitzsch, E. et al. (ed.), Berliner geowiss. Abh. (A)50: 24984.Google Scholar
Peel, R.F. 1939. The Gilf Kebir, Geographical Journal 93: 295307.Google Scholar
Rhotert, H. 1952. Libysche Felsbilder. Ergebnisse der XI und XII Deutschen Inner-Afrikanischen Forschungs-Expedirion (DIAFE) 3933/1934/1935. Darmstadt: Wittich Verlag.Google Scholar
Ritchie, J. Eyles, C.C.H. & Haynes, C.V. Jr. 1985. Sediment and pollen evidence for an early to mid-Holocene humid period in the Eastern Sahara, Nature 314: 3525.Google Scholar
Said, R. 1983. Remarks on the origin of the landscape of the eastern Sahara, Journal of African Earth Sciences 1 (2): 1538.Google Scholar
Schaber, G.G., Mccauley, J.F. Breed, C.S. & Olhoeft, G.R.. 1986. Shuttle imaging radar: physical controls on signal penetration and subsurface scattering in the Eastern Sahara, IEEE Transactions on Geoscience and Remote Sensing GE-24 (4): 60323.CrossRefGoogle Scholar
Schild, R. & Wendorf, F.. 1977. The prehistory of Dakhla oasis and adjacent desert. Warsaw: The Institute for the History of Material Culture, Polish Academy of Sciences.Google Scholar
Stuiver, M. & Reimer, P.J.. 1986. User’s guide to the programs CALIB and DISPLAY, Radiocarbon 28: 102230.CrossRefGoogle Scholar
Szabo, B., Haynes, C.V. Jr., Mchugh, W.P. Schaber, G.G. Breed, C.S. & Mccauley, J.F.. 1987. Ages of carbonate deposition episodes in the hyperarid Eastern Sahara - application to dating early human occupation of the paleovalleys. Paper presented at the Annual Meeting of the Geological Society of America, October, Phoenix (AZ).Google Scholar
Szabo, B.J., Mchugh, W.P. Schaber, G.G. Haynes, C.V. Jr. & Breed, C.S.. 1989. Uranium-series dated authigenic carbonates and Acheulian sites in southern Egypt, Science 243: 10536.Google Scholar
Van Noten, F. 1978. Rock art of the Jebel Uweinat (Libyan Sahara). Graz: Akademische Druck- u. Verlagsanstalt.Google Scholar
Wendorf, F. & Schild, R.. 1980. Prehistory of the Eastern Sahara. New York: Academic Press.Google Scholar
Wendorf, F. & Schild, R.. 1984. Conclusions, in Wendorf et al.: 40428.Google Scholar
Wendorf, F., Schild, R. (assemblers) & Close, A.E. (ed.). 1984. Cattle-keepers of the Eastern: the Neolithic of Bir Kìseiba. Dallas (TX): Southern Methodist University.Google Scholar
Wendorf, F., Close, A.E. & Schild, R.. 1987. A survey of the Egyptian radar channels: an example of applied archaeology, Journal of Field Archaeology 14(1): 4363.Google Scholar
Wendorf, F., Close, A.E. Schild, R. Gautier, A. Schwarcz, H.P. Miller, G.H. Kowalski, K. Krolik, H. Bluszcz, A. Robins, D. Grun, R. & Mckinney, C.. In press. Chronology and stratigraphy of the middle paleolithic at Bir Tarfawi, Egypt, in Desmond Clark, J. (ed.), Cutural beginnings: approaches to understanding early hominid life-ways in the African savanna mosaic. Mainz: Romisch-Germanisches Zentral-museum.Google Scholar
Wickens, G.E. 1975. Changes in the climate and vegetation of the Sudan since 20,000 b.p., Boissiera 24: 4365.Google Scholar
Wickens, G.E. 1982. Palaeobotanical speculations and Quaternary environments in the Sudan, in Williams, M.A.J. & Adamson, D.A. (ed.), Land between two Niles: 2350. Rotterdam: Balkema.Google Scholar
Winkler, H.A. 1939. Hock-drawings of Southern Upper Egypt II (including ’Uweinat). London: Egypt Exploration Society.Google Scholar