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ULVS XIX: A Reconnaissance Survey of the Cenozoic Geomorphology of the Wadi Merdum, Beni Ulid, in the Libyan Pre-desert

Published online by Cambridge University Press:  03 March 2015

D. D. Gilbertson
Affiliation:
Department of Archaeology and Prehistory, University of Sheffield
C. O. Hunt
Affiliation:
School of Geography, CCAT, Cambridge
F. Hivernel
Affiliation:
Department of Archaeology, University of Cambridge
J. E. Burnett
Affiliation:
Department of Photogrammetry, University College, London

Abstract

A geological reconnaissance of the Beni Ulid — Wadi Merdum region of the pre-desert of Tripolitania shows that at least twenty, stratigraphically distinct geomorphic events can be recognised from field exposures, field mapping and the analysis of Spacelab metric camera photography. The earliest events are provisionally attributed to the early Cenozoic and include uplift, tilting, faulting, the formation of karstic and karst-tectonic landforms, and erosion by meandering river systems. Some of these valleys were infilled with lava flows from the south-south-west in the ?late Palaeocene/early Eocene. Re-excavation of the ancient landscape by rivers followed. Pleistocene deposits of powerful, often braided rivers occur in the wadi floor. The wadi sides are clothed in complex sequences of alluvial fans, screes, windblown, waterlain and anthropogenic deposits, sometimes with weathering horizons and calcretes of uncertain stratigraphic significance. The plateaux contain large alluvial basins, palaeosols, soils and weathering horizons of uncertain age. Accelerated soil erosion caused by human activity appears to have been important in the area — slope deposits of scree and midden between 4 and 8 metres in thickness have accumulated beneath one gasr during a 500 year period. The most recent deposits identified are complex aeolian deposits at the wadi edge and the interdigitating series of floodloams and aeolian sands on the wadi floors.

Type
Articles
Copyright
Copyright © Society for Libyan Studies 1988

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References

Almond, D. C., Busrewil, M. T. and Wadsworth, W. J. 1974. The Gharian Tertiary Volcanic Province of Tripolitania, Libya. Geological Journal 9: 1728.CrossRefGoogle Scholar
Anketell, J. M. and Ghellali, S. M. 1983. Stratigraphic studies on Quaternary Floodplain deposits of the Eastern Gefara Plain, S.P.L.A.J. Libyan Studies 14: 1638.CrossRefGoogle Scholar
Barker, G. W. W. and Jones, G. D. B. 1981. The UNESCO Libyan Valleys Survey, 1980. Libyan Studies 12: 948.CrossRefGoogle Scholar
Barker, G. W. W. and Jones, G. D. B. 1982. The UNESCO Libyan Valleys Survey 1979-1981: Palaeoeconomy and environmental archaeology in the pre-desert. Libyan Studies 13: 134.CrossRefGoogle Scholar
Barker, G. W. W. and Jones, G. D. B. 1984. The UNESCO Libyan Valleys Survey VI: Investigations of a Romano-Libyan farm, part 1. Libyan Studies 15: 145.CrossRefGoogle Scholar
Barker, G. W. W., Gilbertson, D. D., Griffin, C. M., Hayes, P. P. and Jones, D. A. 1983. The UNESCO Libyan Valleys Survey V. Sedimentological properties of Holocene wadi floor and plateau deposits in Tripolitania, north-west Libya. Libyan Studies 14: 6985.CrossRefGoogle Scholar
Busrewil, M. T. and Wadsworth, W. J. 1980. The Basanitic Volcanoes of the Gharyan Area, NW Libya. In Salem, M. J. and Busrewil, M. T. (eds.). The Geology of Libya Volume III. London, Academic Press: 10951105.Google Scholar
Clark, G. 1986. The UNESCO Libyan Valleys Survey XIV: Archaeozoological evidence for stock-raising and stock management in the pre-desert. Libyan Studies 14: 6985.Google Scholar
Dore, J. N. and Van der Veen, M. 1986. Radiocarbon dates from the Libyan Valleys Survey. Libyan Studies 17: 6568.CrossRefGoogle Scholar
Dorsett, J. E., Gilbertson, D. D., Hunt, C. O. and Barker, G. W. W. 1984. The UNESCO Libyan Valleys Survey VIII: Image analysis of Landsat Satellite data for archaeological and environmental surveys. Libyan Studies 15: 7180.CrossRefGoogle Scholar
Fieller, N. R. J., Gilbertson, D. D. and Olbricht, W. 1984a. A new method for the environmental analysis of particle size data from shoreline environments. Nature 311: 648651.CrossRefGoogle Scholar
Fieller, N. R. J., Gilbertson, D. D. and Olbricht, W. 1984b. Skew log Laplace distributions to interpret particle size distribution data. Manchester-Sheffield School of Probability and Statistics Research Report no. 235, 17 pp.Google Scholar
Fieller, N. R. J., Gilbertson, D. D. and Timmins, D. A. Y. 1987a. Sedimentological analyses of Shell-Midden Sites. In Mellars, P. A. (ed.). Excavations on Oronsay: Prehistoric Human Ecology on a Small Island. Edinburgh, Edinburgh University Press: 7890.Google Scholar
Fieller, N. R. J., Gilbertson, D. D., Briggs, D. J., Griffin, C. M. and Jenkinson, R. D. S. 1987b. The first use of log skew Laplace distribution to model the textural properties of cave sediments. University of Sheffield Department of Probability and Statistics Research Report no. 301/87.Google Scholar
Flenley, E. C., Fieller, N. R. J. and Gilbertson, D. D. 1987. The statistical modelling of ‘mixed’ grain size distributions from aeolian sands in the Libyan Pre-Desert using log skew Laplace distributions. In Reid, I. and Frostick, L. E. (eds.). Desert Sediments: Ancient and Modern. Special Publication of the Geological Society of London, 35: 271280.Google Scholar
Gale, S. J. and Hunt, C. O. 1986. The hydrological characteristics of floodwater farming systems. Applied Geography 6: 3342.CrossRefGoogle Scholar
Gale, S. J., Gilbertson, D. D. and Hunt, C. O. 1986. The UNESCO Libyan Valleys Survey XII: Infill sequence and water-carrying capacity of an ancient irrigation channel, Wadi Gobbeen, Tripolitania. Libyan Studies 17: 15.CrossRefGoogle Scholar
Gilbertson, D. D. 1986a. Runoff (floodwater) farming in rural arid lands. Applied Geography 16(3): 511.CrossRefGoogle Scholar
Gilbertson, D. D. (ed.) 1986b. Runoff Farming in Rural Arid Lands: an ‘Applied Geography Theme Volume’. Applied Geography 6(1/2), 122 pp.Google Scholar
Gilbertson, D. D., Hayes, P. P., Barker, G. W. W. and Hunt, C. O. 1984. The UNESCO Libyan Valleys Survey VII: An Interim Classification and Functional Analysis of Ancient Wall Technology and Land Use. Libyan Studies 15: 4570.CrossRefGoogle Scholar
Gilbertson, D. D., Holyoak, D. T., Hunt, C. O. and Paget, F. N. 1983. The palaeoecology of Late Quaternary floodplain deposits in Tuscany I: The Feccia Valley at Frosini. Archeologia medievale X: 340350.Google Scholar
Gilbertson, D. D., Hunt, C. O., Briggs, D. J., Coles, G. M. and Thew, N. M. 1987. ULVS XVIII: The Quaternary geomorphology and calcretes of the area around Gasr Banat in the pre-desert of Tripolitania. Libyan Studies 18: 1527.CrossRefGoogle Scholar
Gilbertson, D. D., Hunt, C. O., Briggs, D. J., Mills, C. M., Coles, G. M. and Thew, N. M. In press. Palaeoecology of Late Quaternary Floodplain Deposits in Tuscany II. Interim Report on the fluvial geomorphology, palaeoecology and medieval water resource management in the Pian di Feccia. Archeologia medievale.Google Scholar
Gile, L. H. 1981. 1981 supplement to the Desert Project Soil Monograph. Los Cruces. New Mexico State University Library, Rio Grande Historical Collections, 84 pp., 43 soil maps.Google Scholar
Gile, L. H. and Grossman, R. B. 1979. The Desert Project Soil Monograph. Washington D.C. Soil Conservation Service, U.S. Department of Agriculture, 984 pp.Google Scholar
Gile, L. H., Hawley, J. W. and Grossman, R. B. 1981. Soils and Geomorphology in the Basin and Range Area of Southern New Mexico — Guidebook to the Desert Project. Memoir no. 39. Socorro, N. M. New Mexico Bureau of Mines and Mineral Resources.CrossRefGoogle Scholar
Gile, L. H., Peterson, F. F. and Grossman, R. B. 1966. Morphological and genetic sequences of carbonate accumulation in desert soils. Soil Science 101: 347360.CrossRefGoogle Scholar
Hunt, C. O., Gale, S. J. and Gilbertson, D. D. 1985. The UNESCO Libyan Valleys Survey IX: Anhydrite and limestone karst in the Tripolitanian Pre-desert. Libyan Studies 16: 113.CrossRefGoogle Scholar
Hunt, C. O., Mattingly, D. J., Gilbertson, D. D., Barker, G. W. W., Dore, J. N., Burns, J. R., Fleming, A. M. and Van der Veen, M. 1986. ULVS XIII: Interdisciplinary Approaches to Ancient Farming in the Wadi Mansur, Tripolitania. Libyan Studies 17: 2363.CrossRefGoogle Scholar
Hunt, C. O., Gilbertson, D. D., Jenkinson, R. D. S., Van der Veen, M., Yates, G. and Buckland, P. C. 1987. ULVS XVII: Palaeoecology and agriculture of an abandonment phase of gasr Mm10, Wadi Mimoun, Tripolitania. Libyan Studies 18: 113.CrossRefGoogle Scholar
Jones, G. D. B. and Barker, G. W. W. 1980. The UNESCO Libyan Valleys Survey. Libyan Studies 11: 1136.CrossRefGoogle Scholar
Jones, G. D. B. and Barker, G. W. W. 1983. The UNESCO Libyan Valleys Survey: the 1981 Season. Libyan Studies 14: 3968.CrossRefGoogle Scholar
Jones, G. D. B. and Barker, G. W. W. 1984. The UNESCO Libyan Valleys Survey VI: Investigations of a Romano-Libyan Farm, Part 1. Libyan Studies 15: 144.Google Scholar
Megerisi, M. and Mamgain, V. D. 1980. The Upper Cretaceous-Tertiary formations of Northern Libya. In Saleem, M. J. and Busrewil, M. T. (eds.). The Geology of Libya. Volume II. London, Academic Press: 6772.Google Scholar
Piccolo, C. 1971. Outlines of volcanism in northern Tripolitania. In Gray, C. (ed.). Symposium on the Geology of Libya. Tripoli, Faculty of Science, University of Libya: 323331.Google Scholar
Salem, M. J. and Busrewil, M. T. 1980. The Geology of Libya. Volume III. London, Academic Press.Google Scholar
Singh, G. D. S. 1980. Structural control of groundwater flow in the Mesozoic sandstone aquifers of the eastern part of the Jabal Nafusah, Libya. In Saleem, M. J. and Busrewil, M. T. (eds.). The Geology of Libya. Volume II. London, Academic Press: 643658.Google Scholar
der Veen, M. Van. 1985. The UNESCO Libyan Valleys Survey X: Botanical evidence for ancient farming in the pre-desert. Libyan Studies 16: 1528.CrossRefGoogle Scholar
Vita-Finzi, C. 1969. Post-Roman Changes in Wadi Lebda. In Willimot, S. G. and Clarke, J. I. (eds.). Field Studies in Libya. Durham, University of Durham: 4651.Google Scholar
Vita-Finzi, C. 1969. The Mediterranean Valleys: geological changes in historical times. Cambridge, Cambridge University Press.Google Scholar
Vita-Finzi, C. 1971. Alluvial history of northern Libya since the last interglacial. In Gray, C. (ed.). Symposium on the Geology of Libya. Tripoli, University of Tripoli: 409429.Google Scholar
Wagstaff, J. M. 1981. Buried assumptions: some problems raised in the interpretation of the ‘Younger Fill’ raised by recent data from Greece. Journal of Archaeological Science 8: 247264.CrossRefGoogle Scholar
Zivanovic, M. 1977. Geological map of Libya: 1:250,000 sheet, Beni Walid NH 32-2. Exploratory Booklet. Industrial Research Centre, Tripoli, 64 pp.Google Scholar