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7 - Overland flow on watersheds

Published online by Cambridge University Press:  05 June 2012

Calvin W. Rose
Affiliation:
Griffith University, Queensland
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Publisher: Cambridge University Press
Print publication year: 2004

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References

Bonell, M., and Balek, J. (1993). Recent scientific developments and research needs in hydrological processes of the humid tropics. In Hydrology and Water Management in the Humid Tropics — Hydrological Research Issues and Strategies for Water Management, eds. M. Bonell, M. M. Hufshmidt and J. S. Gladwell. Cambridge: Cambridge University Press, pp. 167–260CrossRef
Boughton, W. C. (1980). A review of the USDA SCS curve number method. Aust. J. Soil Res. 27, 511–523CrossRefGoogle Scholar
Boyd, M. J., and Bufill, M. C. (1989). Determining runoff routing model parameters without rainfall data. J. Hydrol. 108, 281–294CrossRefGoogle Scholar
Chow, V. T. (1959). Open Channel Hydraulics. New York: McGraw-Hill
Ciesiolka, C. A. A., Coughlan, K. J., Rose, C. W., Escalante, M. C., Hashim, G. M., Paningbatan, E. P. Jr, and Sombatpanit, S. (1995a). Methodology for a multi-country study of soil erosion management. Soil Technol. 8, 179–192CrossRefGoogle Scholar
Ciesiolka, C. A. A., Coughlan, K. J., Rose, C. W., and Smith, G. D. (1995b). Erosion and hydrology of steeplands under commercial pineapple production. Soil Technol. 8, 243–258CrossRefGoogle Scholar
Dingman, S. L. (1984). Fluvial Hydrology. New York: W. H. Freeman and Company
Jakeman, A. K., Green, T. R., Zhang, L., Beavis, S. G., Evans, J. P., Deitrich, C. R., and Barnes, B. (1998). Modelling catchment erosion, sediment and nutrient transport in large basins. In Soil Erosion at Multiple Scales — Principles and Methods for Assessing Causes and Impacts, eds. F. W. T. Penning de Vries, F. Argus and J. Kerr. Wallingford: CABI publishing, in association with the International Board for Soil Research and Management (IBSRAM), pp. 343–355
Laurenson, E. M., and Mein, R. G. (1988). RORB — Version 4, Runoff routing program user manual. Clayton, Victoria: Department of Civil Engineering, Monash University
O'Loughlin, E. M. (1981). Saturation regions in catchments and their relations to soil and topographic properties. J. Hydrol. 53, 229–246CrossRefGoogle Scholar
O'Loughlin, E. M. (1986). Prediction of surface saturation zones in natural catchments by topographic analysis. Water Resources Res. 22, 794–804CrossRefGoogle Scholar
Pilgrim, D. H. (ed.) (1987). Australian Rainfall and Runoff: A Guide to Flood Estimation. Canberra, ACT: Institution of Engineers
Rose, C. W. (ed.) (1995). Soil erosion and conservation. Soil Technol. Special Issue 8, 177–258
Rose, C. W., Parlange, J.-Y., Sander, G. C., Campbell, S. Y., and Barry, D. A. (1983). Kinematic flow approximation to runoff on a plane: an approximate analytical solution. J. Hydrol. 62, 363–369CrossRefGoogle Scholar
USDA Soil Conservation Service (1986). Urban hydrology for small watersheds. Technical release No. 55. Washington: USDA
Yu, B. (1998). Theoretical justification of the SCS method for runoff estimation. J. Irrigation Drainage Eng. 124, 306–310CrossRefGoogle Scholar
Yu, B., Rose, C. W., Coughlan, K. J., and Fentie, B. (1997). Plot-scale rainfall—runoff characteristics and modelling at six sites in Australia and Southeast Asia. Trans. Am. Soc. Agric. Eng. 40, 1295–1303CrossRefGoogle Scholar

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  • Overland flow on watersheds
  • Calvin W. Rose, Griffith University, Queensland
  • Book: An Introduction to the Environmental Physics of Soil, Water and Watersheds
  • Online publication: 05 June 2012
  • Chapter DOI: https://doi.org/10.1017/CBO9780511801426.008
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  • Overland flow on watersheds
  • Calvin W. Rose, Griffith University, Queensland
  • Book: An Introduction to the Environmental Physics of Soil, Water and Watersheds
  • Online publication: 05 June 2012
  • Chapter DOI: https://doi.org/10.1017/CBO9780511801426.008
Available formats
×

Save book to Google Drive

To save content items to your account, please confirm that you agree to abide by our usage policies. If this is the first time you use this feature, you will be asked to authorise Cambridge Core to connect with your account. Find out more about saving content to Google Drive.

  • Overland flow on watersheds
  • Calvin W. Rose, Griffith University, Queensland
  • Book: An Introduction to the Environmental Physics of Soil, Water and Watersheds
  • Online publication: 05 June 2012
  • Chapter DOI: https://doi.org/10.1017/CBO9780511801426.008
Available formats
×