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Compound Channel’s Cross-section Shape Effects on the Kinetic Energy and Momentum Correction Coefficients

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Bousmar D. (2002) Flow modeling in compound channels, momentum transfer between main channel and prismatic or non-prismatic floodplains, Thesis presented for the degree of Doctor in Applied Sciences, Universities catholique de Louvain.Search in Google Scholar

Chow V. T. (1959) Open-channel hydraulics, [in:] Open-channel hydraulics, McGraw-Hill.Search in Google Scholar

Devi K., Khatua K. K. (2019) Discharge prediction in asymmetric compound channels, Journal of Hydro-environment Research, 23, 25–39.10.1016/j.jher.2019.02.001Search in Google Scholar

Devi K., Khuntia J. R., Khatua K. K. (2018) Depth-Averaged Velocity Distribution for Symmetric and Asymmetric Compound Channels, Proceedings of the International Conference on Microelectronics, Computing & Communication Systems, Springer, Singapore, 281–292.10.1007/978-981-10-5565-2_25Search in Google Scholar

Ervine D. A., Babaeyan-Koopaei K., Sellin H. J. (2000) Two-dimensional Solution for Straight and Meandering Overbank Flows, Journal of Hydraulic Engineering, ASCE, 126 (9), 653–669.10.1061/(ASCE)0733-9429(2000)126:9(653)Search in Google Scholar

Fenton J. D. (2005) On the energy and momentum principles in hydraulics, Proc. 31st Congress IAHR, Seoul, 625–636.Search in Google Scholar

French R. H. (1987) Open-Channel Hydraulics, McGraw-Hill, Singapore, Second edition.Search in Google Scholar

Hamidifar H., Omid M. H. (2013) Floodplain vegetation contribution to velocity distribution in compound channels, Journal of Civil Engineering and Urbanism, 3 (6), 357–361.Search in Google Scholar

Henderon F. M. (1966) Open channel flow, Macmilan Publishing Co, New York, United States of America.Search in Google Scholar

Keshavarzi A., Hamidifar H. (2018) Kinetic energy and momentum correction coefficients in compound open channels, Natural Hazards, 92 (3), 1859–1869.10.1007/s11069-018-3285-0Search in Google Scholar

Keshavarzi A. (1993) Investigation of energy and momentum coefficients in compound channels, M.Sc. thesis, University of New South Wales, Australia.Search in Google Scholar

Knight D. W., Shiono K., Pirt J. (1989) September. Prediction of depth mean velocity and discharge in natural rivers with overbank flow, Proceedings of the International Conference on Hydraulic and Environmental Modellling of Coastal, Estuarine and River Waters, Gower Publishing, 419–428.Search in Google Scholar

Kolupaila S. (1956) Methods of determination of the kinetic energy factor, The Port Engineer, Calcutta, India, 5 (1), 12–18.Search in Google Scholar

Li D., Hager W. H. (1991) Correction coefficients for uniform channel flow, Canadian Journal of Civil Engineering, 18 (1), 156–158.10.1139/l91-018Search in Google Scholar

Mohanty P. K., Khatua K. K. (2014) Estimation of discharge and its distribution in compound channels, Journal of Hydrodynamics, 26 (1), 144–154.10.1016/S1001-6058(14)60017-2Search in Google Scholar

Mohanty P. K. (2013) Flow analysis of compound channels with wide flood plains Prabir (Doctoral dissertation).Search in Google Scholar

Mohanty P. K., Dash S. S., Khatua K. K., Patra K. C. (2012) Energy and momentum coefficients for wide compound channels, River Basin Management, VII, 172, 87.10.2495/RBM130081Search in Google Scholar

Moreta P. J. M., Lopez-Querol M. S. (2017) Numerical Modeling in Flood Risk Assessment: UK Case Study, Civil Engineering Research Journal, 3 (1), DOI: 10.19080/CERJ.2017.03.555601.10.19080/CERJ.2017.03.555601Search in Google Scholar

Nagy J., Kiss T., Fehérváry I., Vaszkó C. (2018) Changes in Floodplain Vegetation Density and the Impact of Invasive Amorpha fruticosa on Flood Conveyance, Journal of Environmental Geography, 11 (3–4), 3–12.10.2478/jengeo-2018-0008Search in Google Scholar

Parsaie A. (2016) Analyzing the distribution of momentum and energy coefficients in compound open channel, Modeling Earth Systems and Environment, 2 (1), 15.10.1007/s40808-015-0054-xSearch in Google Scholar

Seckin G., Çağatay H., Çobaner M., Yurtal R. (2009a) Experimental investigation of kinetic energy and momentum correction coefficients in open channels, Scientific Research and Essay, 4 (5), 473–478.Search in Google Scholar

Seckin G., Mamak M., Atabay S., Omran M. (2009b) Discharge estimation in compound channels with fixed and mobile bed, Sadhana, 34 (6), 923–945., La Houille Blanche, (7), 793–802.10.1007/s12046-009-0056-3Search in Google Scholar

Shiono K., Knight D. W. (1988) Two-dimensional analytical solution for a compound channel, Proceedings of the 3rd international symposium on refined flow modeling and turbulence measurements, Proc. 3rd Int. Symp. on refined flow modeling and turbulence measurements, 503–510.Search in Google Scholar

Shiono K., Knight D. W. (1990) Mathematical models of flow in two or multi stage straight channels, Proc. Int. Conf. on River Flood Hydraulics, Wiley New York, 229–238.Search in Google Scholar

Shiono K., Knight D. W. (1991) Turbulent open-channel flows with variable depth across the channel, Journal of Fluid Mechanics, 222, 617–646.10.1017/S0022112091001246Search in Google Scholar

Singh P. K. Banerjee S. Naik B., Kumar A., Khatua K. K. (2018) Lateral distribution of depth average velocity & boundary shear stress in a gravel bed open channel flow, ISH Journal of Hydraulic Engineering, 1–15.10.1080/09715010.2018.1505562Search in Google Scholar

eISSN:
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2 volte all'anno
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Engineering, Introductions and Overviews, other