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31
[24] Street-Perrott A., Beran M. and Radcliffe R. (Eds), Variations in the Global Water Budget,
Reidel, 518 (1983).
[25] Shuttleworth W.1., Macrohydrology - A new challenge for Processes Hydrology. Journal of
Hydrology, 100, 31-56 (1988).
[26] Shuttleworth, W.J. Insight from large-scale observational studies of land/atmosphere
interactions. Reviews of Geophysics, 12, 3-30 (1991).
[27] Bolle 1.1., Feddes R.A. and Kalma J.D., Exchange processes at the land surface for a range of
space and time scales. International Association of Hydrological Sciences, Pub. No. 212,
626 (1993).
[28] ICSU/WMO. Scientific Plan for the Global Energy and Water Cycle Experiment WCRP-40,
WMO, TD-No. 376, 84 (1992).
[29] ICSUIWMO. Scientific Plan for the GEWEX Continental Scale International Project (GCIP),
WCRP 67 WMO, TD-No. 461, 65 (1992).
[30] Walling D.E. and Webb B.W., Material transport by the world's rivers: evolving
perspectives in Water for the Future (Rodda, J.C., and Matalas, N.C. Eds), International
Association of Hydrological Sciences, Pub No. 164, 313-329 (1987).
[31] Degens E., Kempe S. and Ittekkot V., Monitoring carbon in world rivers Environment, 26,
29-33 (1984).
[32] Meybeck M., Carbon, Nitrogen and Phosphorus Transport by world rivers, American Journal
of Science 282, 401-450 (1982).
[33] Goodison B.E. and Vet RJ., Precipitation data compatibility in North America and the
impact of studies on acid deposition: in Acid Deposition, International Association of
Hydrological Sciences, Pub No. 179,47-55 (1989).
[34] Berner E.K. and Berner R.A., The Global Water Cycle-Geochemistry and Environment.
Prentice Hall, 397 (1987).
[35] WMO. INFOHYDRO Manual, 2nd Edition. Operational Hydrology Report, World Meteorological Organization (1994) (in press).
[36] WHO. GEMSlWater 1990-2000. The Challenge Ahead. UNEP/WHOIUNESCOIWMO Programme on Global Water Quality Monitoring and Assessment, WHO/PEP 2 (1991).
[37] Rodda lC., Pieyns S.A., Sehmi N.S. and Matthews G., Towards a world hydrological cycle
observing system, Hydrological Sciences Journal, 38, 373-378 (1993).
[38] WMO/UNESCO. Report on water resources assessment, World Meteorological Organization/UNESCO, 64 (1991).
[39] UNDP/WB. Reports of the Sub-Saharan Hydrological Assessment Project (42 regional &
national reports) United Nations Development ProgrammelWorid Bank (1990-1994).
[40] Toebes, c., and Ouryvaev, V., (Eds.). Representative and experimental basins: an
international guide for research and practice, Studies & reports in hydrology 4, UNESCO, 348
(1970).
[41] IAHS. The influence of man on the hydrological regime with special reference to
representative and experimental basins, International Association of Hydrological Sciences,
Pub. No. 130, 483 (1980).
[42] Swanson R.B., Bernier P.Y. and Woodard P.D., (Eds). Forest Hydrology and Watershed
Management, International Association of Hydrological Sciences, Pub. No.167 (1987).
[43] Lang H. and Musy A., (Eds). Hydrology in Mountainous Regions I - Hydrological
Measurements; the Water Cycle, International Association of Hydrological Sciences, Pub.
No. 193 (1990).
[44] Dozier J., Opportunities to improve hydrologic data, Reviews of Geophysics 30, 315-331.
[45] USGS. National Water Summary 1990-91. Hydrologic Events and Stream Water Quality,
United States Geological Survey, Water Supply Paper No. 2400 (1993).
[46] WMO. Guide to Hydrological Practices, 5th Edition. World Meteorological Organization
(1994).
[47] Ackers P., White W.R., Perkins lA. and Harrison AJ.M., Weirs and Flumes for Flow
Measurement, John Wiley & Sons (1978).
[48] Herchy R.W., Accuracy in: Hydrometry: Principles and Practices (Herschy, R.W., Ed). John
Wiley & Sons, 353-397 (1978).
[49] Herschy R.W., Streamflow Measurement, Elsevier, 553 (1985).
