Journal of hydrologic engineering, Vol. 7, N° 3. Journal of Hydrologic Engineering - Mai/Juin 2002
| Titre : | Journal of hydrologic engineering, Vol. 7, N° 3. Journal of Hydrologic Engineering - Mai/Juin 2002 |
| Type de document : | Bulletin |
| Paru le : | 11/12/2005 |
Dépouillements
Article : texte imprimé
Hickey, John T., Auteur ;
Collins, Robert F., Auteur ;
Richardson, Kevin A. ;
White, Laurine L. ;
Pugner Paul E.
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In Response to the destructive floods of 1983, 1986, 1995, and 1997, the U.S. Army Corps of Engineers and the Reclammation Board of the State of California are partnering a study to investigate flood damage reduction and ecosystem restoration op[...]
Article : texte imprimé
Reed, Seann, Auteur ;
Johnson, Dennis, Auteur ;
Sweeney, Timothy
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A Computer application and national geospatial database have been developed to support the calculation of flooding flow (Qf) and method threshold runoff across the conterminous United States and Alaska. Flooding flow is the flow required to caus[...]
Article : texte imprimé
Douglas, Ellen M., Auteur ;
Vogel, Richard M., Auteur ;
Kroll, Charles N.
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Conventional methods for estimating the average return period, E(T), and failure risk, R, generally ignore the impact of persistence in annual stream flow on associated probalistic statements and stream flow statistics. Recent evaluations of str[...]
Article : texte imprimé
Varanou, Ekaterini, Auteur ;
Gkouvatsou, Eleni, Auteur ;
Baltas, Evangelos ;
Mimikou, Maria
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This Paper focuses on the regional impact of climate change on several critical water quantity and quality issues. The Study area is the Ali Efenti Basin in central Greece. The Soil and water assessments tool daily step conceptual model has been[...]
Article : texte imprimé
Kim, Youngsug, Auteur ;
Engel, Bernard A., Auteur ;
Lim, Kyoung Jae ;
Larson, Vickie ;
Duncan, Brean
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Changes in land use can have significant impacts on hydrology and the environment. The Long-Term Hydrologic Impact Analysis model and a geographic information system-based Soil Conservation Service curve number method were used to estimate avera[...]
Article : texte imprimé
The Physics based sediment transport equations are derived from the assumption that the sediment transport rate can be determined by a dominant variable such as flow discharge, flow velocity, slope, shear stress, stream power, and unit stream po[...]
Article : texte imprimé
Birpinar, Mehmet Emin, Auteur ;
Gazioglu, Sukru Ayhan, Auteur
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In the literature approximate and exact theoretical equations are presented for steady-state flow toward a discharging well, which is located eccentrically in a circular aquifer along whose outer cylindrical boundary either the drawdown or the
[...]
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