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Original Articles

Flood routing in a wide channel with a quadratic lag-and-route method

Propagation de crue dans un canal large par une méthode combinant délai et stockage dans un réservoir quadratique

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Pages 169-189 | Received 11 Mar 1996, Accepted 02 Aug 1996, Published online: 25 Dec 2009

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Read on this site (7)

Daniela Peredo, Maria-Helena Ramos, Vazken Andréassian & Ludovic Oudin. (2022) Investigating hydrological model versatility to simulate extreme flood events. Hydrological Sciences Journal 67:4, pages 628-645.
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Carina Furusho, Charles Perrin, Julie Viatgé, Rémi Lamblin & Vazken Andréassian. (2016) Synergies entre acteurs opérationnels et scientifiques au service de l'amélioration de la prévision des crues. La Houille Blanche 102:4, pages 5-10.
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Antonis D. Koussis & Katerina Mazi. (2016) Reverse flood and pollution routing with the lag-and-route model. Hydrological Sciences Journal 61:10, pages 1952-1966.
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David Dorchies, Guillaume Thirel, Maxime Jay-Allemand, Mathilde Chauveau, Florine Dehay, Pierre-Yves Bourgin, Charles Perrin, Claudine Jost, Jean-Louis Rizzoli, Stéphane Demerliac & Régis Thépot. (2014) Climate change impacts on multi-objective reservoir management: case study on the Seine River basin, France. International Journal of River Basin Management 12:3, pages 265-283.
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Nicolas Kreis, Thierry Leviandier & Patrick Arnaud. (2005) Hydrological and hydraulics modelling to assess mitigation effectiveness of floodplain reconnection in the context of a mountain river. International Journal of River Basin Management 3:2, pages 117-123.
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Jean G. Chatila. (2003) Muskingum Method, EXTRAN and ONE-D for Routing Unsteady Flows in Open Channels . Canadian Water Resources Journal / Revue canadienne des ressources hydriques 28:3, pages 481-498.
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Articles from other publishers (20)

Jung‐Hun Song, Younggu Her & Moon‐Seong Kang. (2022) Estimating Reservoir Inflow and Outflow From Water Level Observations Using Expert Knowledge: Dealing With an Ill‐Posed Water Balance Equation in Reservoir Management. Water Resources Research 58:4.
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Juseth E. Chancay & Edgar Fabian Espitia-Sarmiento. (2021) Improving Hourly Precipitation Estimates for Flash Flood Modeling in Data-Scarce Andean-Amazon Basins: An Integrative Framework Based on Machine Learning and Multiple Remotely Sensed Data. Remote Sensing 13:21, pages 4446.
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Behzad Nazari & Dong-Jun Seo. (2021) Analytical solution for nonlinear hydrologic routing with general power-law storage function. Journal of Hydrology 598, pages 126203.
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Antoine Pelletier & Vazken Andréassian. (2020) Hydrograph separation: an impartial parametrisation for an imperfect method. Hydrology and Earth System Sciences 24:3, pages 1171-1187.
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Ahlem Gara, Khouloud Gader, Slaheddine Khlifi, Marnik Vanclooster, Donia Jendoubi & Christophe Bouvier. (2019) The added value of spatially distributed meteorological data for simulating hydrological processes in a small Mediterranean catchment. Acta Geophysica 68:1, pages 133-153.
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A. de Lavenne, V. Andréassian, G. Thirel, M.‐H. Ramos & C. Perrin. (2019) A Regularization Approach to Improve the Sequential Calibration of a Semidistributed Hydrological Model. Water Resources Research 55:11, pages 8821-8839.
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Yong Chang, Jichun Wu, Guanghui Jiang, Xiaoer Zhao & Qiang Zhang. (2019) Investigating the appropriate model structure for simulation of a karst catchment from the aspect of spatial complexity. Environmental Earth Sciences 78:1.
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Noureddine Maref & Abdelali Seddini. (2018) Modeling of flood generation in semi-arid catchment using a spatially distributed model: case of study Wadi Mekerra catchment (Northwest Algeria). Arabian Journal of Geosciences 11:6.
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Long Duc NguyenDivas KarimanziraThomas RauschenbachLars Ribbe. (2016) A Procedure for Approximating a Complex Hydrodynamic Model by the Adaptive Time Delay Method. A Procedure for Approximating a Complex Hydrodynamic Model by the Adaptive Time Delay Method.
Alban de Lavenne, Guillaume Thirel, Vazken Andréassian, Charles Perrin & Maria-Helena Ramos. (2016) Spatial variability of the parameters of a semi-distributed hydrological model. Proceedings of the International Association of Hydrological Sciences 373, pages 87-94.
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Baowei Yan, Shenglian Guo, Ji Liang & Huaiwei Sun. (2015) The generalized Nash model for river flow routing. Journal of Hydrology 530, pages 79-86.
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F. Lobligeois, V. Andréassian, C. Perrin, P. Tabary & C. Loumagne. (2014) When does higher spatial resolution rainfall information improve streamflow simulation? An evaluation using 3620 flood events. Hydrology and Earth System Sciences 18:2, pages 575-594.
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J. Lerat, V. Andréassian, C. Perrin, J. Vaze, J. M. Perraud, P. Ribstein & C. Loumagne. (2012) Do internal flow measurements improve the calibration of rainfall‐runoff models?. Water Resources Research 48:2.
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Xavier Litrico, Jean-Baptiste Pomet & Vincent Guinot. (2010) Simplified nonlinear modeling of river flow routing. Advances in Water Resources 33:9, pages 1015-1023.
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Simon Munier, Xavier Litrico, Gilles Belaud & Pierre-Olivier Malaterre. (2008) Distributed approximation of open-channel flow routing accounting for backwater effects. Advances in Water Resources 31:12, pages 1590-1602.
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Jean‐Luc Payan, Charles Perrin, Vazken Andréassian & Claude Michel. (2008) How can man‐made water reservoirs be accounted for in a lumped rainfall‐runoff model?. Water Resources Research 44:3.
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Andrew M. Sincock, Howard S. Wheater & Paul G. Whitehead. (2003) Calibration and sensitivity analysis of a river water quality model under unsteady flow conditions. Journal of Hydrology 277:3-4, pages 214-229.
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A. M. Sincock & M. J. Lees. (2007) Extension of the QUASAR River‐Water Quality Model to Unsteady Flow Conditions. Water and Environment Journal 16:1, pages 12-17.
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L.A Camacho & M.J Lees. (1999) Multilinear discrete lag-cascade model for channel routing. Journal of Hydrology 226:1-2, pages 30-47.
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Claude Michel. (1999) Comment on “Can we distinguish Richards' and Boussinesq's Equations for hillslopes?: The Coweeta Experiment revisited” by T. S. Steenhuis et al.. Water Resources Research 35:11, pages 3573-3573.
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