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articles
1.Benjamin DEWALSorcid_16x16.png, Vasileios KITSIKOUDIS, Miguel Angel MEJÍA-MORALESorcid_16x16.png, Pierre ARCHAMBEAUorcid_16x16.png, Emmanuel MIGNOTorcid_16x16.png, Sébastien PROUSTorcid_16x16.png, Sébastien ERPICUMorcid_16x16.png, Michel PIROTTONorcid_16x16.png, André PAQUIERorcid_16x16.png (2023).
Can the 2D shallow water equations model flow intrusion into buildings during urban floods?
J. Hydrol. 619, 129231 (20 pages). doi:10.1016/j.jhydrol.2023.129231 doi.ico openalex-16x16.png
2.Miguel Angel MEJÍA-MORALESorcid_16x16.png, Emmanuel MIGNOTorcid_16x16.png, André PAQUIERorcid_16x16.png, Sébastien PROUSTorcid_16x16.png (2023).
Laboratory investigation into the effect of the storage capacity of a city block on unsteady urban flood flows
Water Resour. Res. 59, e2022WR032984 (22 pages). doi:10.1029/2022WR032984 doi.ico openalex-16x16.png
3.Miguel Angel MEJÍA-MORALESorcid_16x16.png, Emmanuel MIGNOTorcid_16x16.png, André PAQUIERorcid_16x16.png, Darius SIGAUD, Sébastien PROUSTorcid_16x16.png (2021).
Impact of the porosity of an urban block on the flood risk assessment: A laboratory experiment
J. Hydrol. 602, 126715 (20 pages). doi:10.1016/j.jhydrol.2021.126715 doi.ico hal.ico openalex-16x16.png
4.Sébastien PROUSTorcid_16x16.png, Joao N. FERNANDES, Joao B. LEAL, Nicolas RIVIÈREorcid_16x16.png, Yann PELTIER (2017).
Mixing layer and coherent structures in compound channel flows: Effects of transverse flow, velocity ratio, and vertical confinement
Water Resour. Res. 53, 3387–3406. doi:10.1002/2016WR019873 doi.ico hal.ico openalex-16x16.png
5.Yann PELTIER, Nicolas RIVIÈREorcid_16x16.png, Sébastien PROUSTorcid_16x16.png, Emmanuel MIGNOTorcid_16x16.png, André PAQUIERorcid_16x16.png, K. SHIONO (2013).
Estimation of the error on the mean velocity and on the Reynolds stress due to a misoriented ADV probe in the horizontal plane: Case of experiments in a compound open-channel
Flow Meas. Instrum. 34, 34–41. doi:10.1016/j.flowmeasinst.2013.08.002 doi.ico hal.ico openalex-16x16.png
6.Sébastien PROUSTorcid_16x16.png, Joao N. FERNANDES, Yann PELTIER, Joao B. LEAL, Nicolas RIVIÈREorcid_16x16.png, Antonio H. CARDOSO (2013).
Turbulent non-uniform flows in straight compound open-channels
J. Hydraul. Res. 51, 656–667. doi:10.1080/00221686.2013.818586 doi.ico hal.ico openalex-16x16.png
7.Sébastien PROUSTorcid_16x16.png, D. BOUSMAR, Nicolas RIVIÈREorcid_16x16.png, André PAQUIERorcid_16x16.png, Y. ZECH (2010).
Energy losses in compound open channels
Adv. Water Resour. 33, 1–16. doi:10.1016/j.advwatres.2009.10.003 doi.ico openalex-16x16.png
8.Sébastien PROUSTorcid_16x16.png, D. BOUSMAR, Nicolas RIVIÈREorcid_16x16.png, André PAQUIERorcid_16x16.png, Y. ZECH (2009).
Nonuniform flow in compound channel: A 1-D method for assessing water level and discharge distribution
Water Resour. Res. 45, W12411 (16 pages). doi:10.1029/2009WR008202 doi.ico openalex-16x16.png
9.Sébastien PROUSTorcid_16x16.png, Nicolas RIVIÈREorcid_16x16.png, D. BOUSMAR, André PAQUIERorcid_16x16.png, Y. ZECH, Robert MOREL (2006).
Flow in compound channel with abrupt floodplain contraction
J. Hydraul. Eng. 132, 958–970. doi:10.1061/(ASCE)0733-9429(2006)132:9(958) doi.ico hal.ico openalex-16x16.png
10.D. BOUSMAR, Nicolas RIVIÈREorcid_16x16.png, Sébastien PROUSTorcid_16x16.png, André PAQUIERorcid_16x16.png, Robert MOREL, Y. ZECH (2005).
Upstream discharge distribution in short compound channel flumes
J. Hydraul. Eng. 131, 408–412.
 
communications avec actes
1.Nicolas RIVIÈREorcid_16x16.png, B. BADIN, Y. BOMCHIL, Sébastien PROUSTorcid_16x16.png (2008).
Recirculation zones downstream open channel expansions
4th International Conference on Fluvial Hydraulics, Izmir, Turkey.
In: River Flow 2008, , .
2.B. TERRIER, Sébastien PROUSTorcid_16x16.png, D. BOUSMAR, K. SHIONO, Nicolas RIVIÈREorcid_16x16.png, André PAQUIERorcid_16x16.png (2008).
Investigation of the establishment of uniform flow in compound channel flumes
8th International Conference on Hydro-Science and Engineering, Nagoya, Japan.
In: Proceedings of ICHE 2008, , .
3.Sébastien PROUSTorcid_16x16.png, André PAQUIERorcid_16x16.png, Nicolas RIVIÈREorcid_16x16.png, D. BOUSMAR (2008).
Resolving energy losses for non-uniform flows in compound channel
4th International Conference on Fluvial Hydraulics, Izmir, Turkey.
In: River Flow 2008, , .
4.Yann PELTIER, Sébastien PROUSTorcid_16x16.png, A. BOURDAT, F. THOLLET, Nicolas RIVIÈREorcid_16x16.png, André PAQUIERorcid_16x16.png (2008).
Physical and numerical modeling of overbank flow with a groyne on the floodplain
4th International Conference on Fluvial Hydraulics, Izmir, Turkey.
In: River Flow 2008, , .
5.Sébastien PROUSTorcid_16x16.png, D. BOUSMAR, Nicolas RIVIÈREorcid_16x16.png, André PAQUIERorcid_16x16.png, Y. ZECH (2006).
A methodology for computing non-uniform flows in compound channels
3rd International Conference on Fluvial Hydraulics, Lisbon, Portugal.
In: River Flow 2006, Taylor & Francis, UK, 405–414.
 
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