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Bibliographie Muschalla D., Schneider S., Schröter K., Gamerith V. et Gruber G. (2008). Sewer modelling based on highly distributed calibration data sets and multi-objective auto-calibration schemes. Water Science and Technology, 57(10), p.1547-54. Muschalla D. (2008). Optimization of integrated urban wastewater systems using multi-objective evolution strategies. Urban Water Journal, 5(1), p.59-67. Nash J.E. et Sutcliffe J.V. (1970). River flow forecasting through conceptual models part I - A discussion of principles. Journal of Hydrology, 10(3), p.282-290. NF ENV13005, 1999. Guide pour l’expression de l’incertitude de mesure. Paris, France. AFNOR. 113 p. Novotny V. et Olem H. (1994). Water quality: prevention, identification, and management of diffuse pollution. NewYork, USA. Novotny V., Sung H.-M., Bannerman R. et Baum K. (1985). Estimating nonpoint pollution from small urban watersheds. Journal of Water Pollution Control Federation, 57(4), p.339-348. Obropta C.C. et Kardos J.S. (2007). Review of Urban Stormwater Quality Models: Deterministic, Stochastic, and Hybrid Approaches. Journal of the American Water Resources Association, 43(6), p. 1508-1523. Pandit A. et Gopalakrishnan G. (1997). Estimation of Annual Pollutant Loads under Wet Weather Conditions. Journal of Hydrologic Engineering, 2(4), p.211-218. Philippe J.P. et Ranchet J. (1987). Pollution of runoff water in urban areas. Synthesis of data from ten catchments around Paris. LCPC Research Report nr 142, Paris, France, 76 p. Piatyszek E., Joannis C. et Aumond M. (2001). A screening method for dry-weather flow rate measurements in sewers. Actes de la 4ème conférence internationale de Novatech, 25-27 juin 2001, Lyon, France, p. 169-176. Pitt R.E. et Amy G. (1973). Toxic Materials Analysis of Street Surface Contaminants. URS Research Company for the U.S. EPA report no EPA-R2-73-283, Washington D.C. USA: U.S. Environmental Protection Agency, aout 1973. Raftery A.E. et Lewis S.M. (1992). Comment: One long run with diagnostics: Implementation strategies for Markov Chain Monte Carlo. Statistical Science, 7(4), p.493-497. Rauch W., Bertrand-Krajewski J.-L., Krebs P., Mark O., Schilling W., Schuetze M. et Vanrolleghem P.A. (2002). Deterministic modelling of integrated urban drainage systems. Water Science and Technology, 45(3), p.81–94. Reichert P. (2009). Environmental system analysis. Course document, 9 juin 2009. Renard B., Kavetski D., Kuczera G., Thyer M. et Franks S.W. (2010). Understanding predictive uncertainty in hydrologic modeling: The challenge of identifying input and structural errors. Water Resources Research, 46(5), p.1-22. 334

Bibliographie Robert C. (2001). The Bayesian Choice: from Decision-Theoretic Motivations to Computational Implementation. Springer-Verlag, eds., New York. Romanowicz R., Beven K. et Tawn J. (1994). Evaluation of predictive uncertainty in non-linear hydrological models using a Bayesian approach. In: Barnett, V., Turkman, K.F. (Eds.), Statistics for the Environment. II. Water Related Issues. Wiley, pp. 297–317. Rossman L.A. (2008). Storm Water Management Model (SWMM) - User’s Manual Version 5.0. Rudemo M. (1982). Empirical choice of histograms and Kernel density estimators. Scandinavian Journal of Statistics, 9, p.65-78. Saget A. (1994). Base de données sur la qualite des rejets urbains de temps de pluie, distribution de la pollution rejetée, dimensions des ouvrages d’interception. Thèse de doctorat, Ecole nationale des ponts et chaussées, Paris, France, 227 p. + annexes. Saget A., Chebbo G. (1995). Distribution of pollutant loads during rainfall events. CERGRENE/Lyonnaise des. Eaux report, June 1995, 60 p. Saget A., Chebbo G. et Bertrand-Krajewski J.-L. (1995). The first flush in sewer system. Proceedings of International Conference on Sewer Solids-Characteristics, Movement, Effects and Control, Dundee, U.K., p. 58-65. Saget A., Gromaire-Mertz M.-C., Deutsch J.-C. et Chebbo G. (1998). Extent of pollution in urban wet weather discharges. In Conference on "Hydrology in a Changing Environment", 6-10 July 1998. Exeter, UK. Saltelli A., Tarantola S. et Chan K.P.S. (1999). A Quantitative Model-Independent Method for Global Sensitivity Analysis of Model Output. Technometrics, 41(1), p.39-56. Saltelli A., Tarantola S. et Campolongo F. (2004). Sensitivity Analysis in Practice: A Guide to Assessing Scientific Models. In: Probability And Statistics Series, ed. Wiley. Sansalone J. et Buchberger S. (1997). Partitioning and first flush of metals in urban roadway storm water. Journal of Environement Engineering, 123(2), p.134-143. Sartor J.D. et Boyd G.B. (1972). Water Pollution Aspects of Street Surface Contaminants. USA. EPA report, EPA-R2-72-081. Sartor J.D., Boyd G.B. et Agardy F. (1974). Water pollution aspects of street surface contaminants. Journal of Water Pollution Control Federation, 46, p.458–67. Schaefli B. et Gupta Hoshin V. (2007). Do Nash values have value ? Hydrological Processes, 21, 2075-2080, p.2075-2080. Schaefli B, Talamba D. et Musy A. (2007). Quantifying hydrological modeling errors through a mixture of normal distributions. Journal of Hydrology, 332(3-4), p.303-315. Schilperoort R.P.S., Dirksen J., Langeveld J.G. et Clemens F.H.L.R. (2009). Assessing characteristic time and space scales of in-sewer processes by analysis of one year of continuous in sewer 335

Bibliographie<br />

Robert C. (2001). The Bayesian Choice: from Decision-Theor<strong>et</strong>ic Motivations to Computational<br />

Implementation. Springer-Verlag, eds., New York.<br />

Romanowicz R., Beven K. <strong>et</strong> Tawn J. (1994). Evaluation of predictive uncertainty in non-linear<br />

hydrological mo<strong>de</strong>ls using a Bayesian approach. In: Barn<strong>et</strong>t, V., Turkman, K.F. (Eds.), Statistics<br />

for the Environment. II. Water Related Issues. Wiley, pp. 297–317.<br />

Rossman L.A. (2008). Storm Water Management Mo<strong>de</strong>l (SWMM) - User’s Manual Version 5.0.<br />

Ru<strong>de</strong>mo M. (1982). Empirical choice of histograms and Kernel <strong>de</strong>nsity estimators. Scandinavian<br />

Journal of Statistics, 9, p.65-78.<br />

Sag<strong>et</strong> A. (1994). Base <strong>de</strong> données sur la qualite <strong>de</strong>s rej<strong>et</strong>s urbains <strong>de</strong> temps <strong>de</strong> pluie, distribution <strong>de</strong> la<br />

pollution rej<strong>et</strong>ée, dimensions <strong>de</strong>s ouvrages d’interception. Thèse <strong>de</strong> doctorat, Ecole nationale <strong>de</strong>s<br />

ponts <strong>et</strong> chaussées, Paris, France, 227 p. + annexes.<br />

Sag<strong>et</strong> A., Chebbo G. (1995). Distribution of pollutant loads during rainfall events.<br />

CERGRENE/Lyonnaise <strong>de</strong>s. Eaux report, June 1995, 60 p.<br />

Sag<strong>et</strong> A., Chebbo G. <strong>et</strong> Bertrand-Krajewski J.-L. (1995). The first flush in sewer system. Proceedings<br />

of International Conference on Sewer Solids-Characteristics, Movement, Effects and Control,<br />

Dun<strong>de</strong>e, U.K., p. 58-65.<br />

Sag<strong>et</strong> A., Gromaire-Mertz M.-C., Deutsch J.-C. <strong>et</strong> Chebbo G. (1998). Extent of pollution in urban w<strong>et</strong><br />

weather discharges. In Conference on "Hydrology in a Changing Environment", 6-10 July 1998.<br />

Ex<strong>et</strong>er, UK.<br />

Saltelli A., Tarantola S. <strong>et</strong> Chan K.P.S. (1999). A Quantitative Mo<strong>de</strong>l-In<strong>de</strong>pen<strong>de</strong>nt M<strong>et</strong>hod for Global<br />

Sensitivity Analysis of Mo<strong>de</strong>l Output. Technom<strong>et</strong>rics, 41(1), p.39-56.<br />

Saltelli A., Tarantola S. <strong>et</strong> Campolongo F. (2004). Sensitivity Analysis in Practice: A Gui<strong>de</strong> to<br />

Assessing Scientific Mo<strong>de</strong>ls. In: Probability And Statistics Series, ed. Wiley.<br />

Sansalone J. <strong>et</strong> Buchberger S. (1997). Partitioning and first flush of m<strong>et</strong>als in urban roadway storm<br />

water. Journal of Environement Engineering, 123(2), p.134-143.<br />

Sartor J.D. <strong>et</strong> Boyd G.B. (1972). Water Pollution Aspects of Stre<strong>et</strong> Surface Contaminants. USA. EPA<br />

report, EPA-R2-72-081.<br />

Sartor J.D., Boyd G.B. <strong>et</strong> Agardy F. (1974). Water pollution aspects of stre<strong>et</strong> surface contaminants.<br />

Journal of Water Pollution Control Fe<strong>de</strong>ration, 46, p.458–67.<br />

Schaefli B. <strong>et</strong> Gupta Hoshin V. (2007). Do Nash values have value ? Hydrological Processes, 21,<br />

2075-2080, p.2075-2080.<br />

Schaefli B, Talamba D. <strong>et</strong> Musy A. (2007). Quantifying hydrological mo<strong>de</strong>ling errors through a<br />

mixture of normal distributions. Journal of Hydrology, 332(3-4), p.303-315.<br />

Schilperoort R.P.S., Dirksen J., Langeveld J.G. <strong>et</strong> Clemens F.H.L.R. (2009). Assessing characteristic<br />

time and space scales of in-sewer processes by analysis of one year of continuous in sewer<br />

335

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