190
Views
27
CrossRef citations to date
0
Altmetric
RESEARCH PAPERS

1-D modelling of conveyance, boundary shear and sediment transport in overbank flow

&
Pages 739-754 | Published online: 26 Apr 2010

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (6)

B. S. Das, K. Devi & K. K. Khatua. (2021) Prediction of discharge in converging and diverging compound channel by gene expression programming. ISH Journal of Hydraulic Engineering 27:4, pages 385-395.
Read now
Prateek Kumar Singh & Kishanjit Kumar Khatua. (2021) Lateral dissemination of depth-averaged velocity, boundary shear stress and stage-discharge curves for compound channels. ISH Journal of Hydraulic Engineering 27:3, pages 253-266.
Read now
Prateek Kumar Singh, Kishanjit Kumar Khatua & Sumit Banerjee. (2021) Flow resistance in straight gravel bed inbank flow with analytical solution for velocity and boundary shear distribution. ISH Journal of Hydraulic Engineering 27:1, pages 9-22.
Read now
A. Zahiri, X. Tang & S. Sharifi. (2017) Optimal prediction of lateral velocity distribution in compound channels. International Journal of River Basin Management 15:3, pages 257-263.
Read now
Abbas Parsaie, Shadi Najafian, Mohammad Hosein Omid & Hojjatallah Yonesi. (2017) Stage discharge prediction in heterogeneous compound open channel roughness. ISH Journal of Hydraulic Engineering 23:1, pages 49-56.
Read now
Zhonghua Yang, Wei Gao & Wenxin Huai. (2012) Estimation of discharge in compound channels based on energy concept. Journal of Hydraulic Research 50:1, pages 105-113.
Read now

Articles from other publishers (21)

Divyanshu Shekhar, Bhabani Shankar Das, Kamalini Devi, Jnana Ranjan Khuntia & Tapas Karmaker. (2023) Discharge estimation in a compound channel with converging and diverging floodplains using ANN–PSO and MARS. Journal of Hydroinformatics 25:6, pages 2479-2499.
Crossref
Nirjharini Sahoo, Kishanjit Kumar Khatua & Ramakar Jha. 2022. River Hydraulics. River Hydraulics 429 441 .
Weiming Wu, Lu Wang, Xudong Ma, Ruihua Nie & Xingnian Liu. (2020) Flow Characteristics and Bed Morphology in a Compound Channel between Two Single Channels. Water 12:12, pages 3544.
Crossref
B.S. DasK. DeviJ.R. KhuntiaK.K. Khatua. (2020) Discharge estimation in converging and diverging compound open channels by using adaptive neuro-fuzzy inference system. Canadian Journal of Civil Engineering 47:12, pages 1327-1344.
Crossref
Xiaonan Tang. (2017) An improved method for predicting discharge of homogeneous compound channels based on energy concept. Flow Measurement and Instrumentation 57, pages 57-63.
Crossref
Abbas Parsaie, Hojjatallah Yonesi & Shadi Najafian. (2017) Prediction of flow discharge in compound open channels using adaptive neuro fuzzy inference system method. Flow Measurement and Instrumentation 54, pages 288-297.
Crossref
ABBAS PARSAIE & AMIR HAMZEH HAGHIABI. (2017) Mathematical expression of discharge capacity of compound open channels using MARS technique. Journal of Earth System Science 126:2.
Crossref
Abbas Parsaie, Shadi Najafian & Hojjatallah Yonesi. (2016) Flow discharge estimation in compound open channel using theoretical approaches. Sustainable Water Resources Management 2:4, pages 359-367.
Crossref
Abbas Parsaie, Shadi Najafian & Zahra Shamsi. (2016) Predictive modeling of discharge of flow in compound open channel using radial basis neural network. Modeling Earth Systems and Environment 2:3.
Crossref
Gholamhossein Akbari. (2016) Comparison of Water Routing Computing Techniques. International Journal of Civil Engineering 14:3, pages 187-195.
Crossref
Hossien KordiRamin AminiAbdolreza ZahiriEsmaeil Kordi. (2015) Improved Shiono and Knight Method for Overflow Modeling. Journal of Hydrologic Engineering 20:12.
Crossref
Mohammad NajafzadehAbdolreza Zahiri. (2015) Neuro-Fuzzy GMDH-Based Evolutionary Algorithms to Predict Flow Discharge in Straight Compound Channels. Journal of Hydrologic Engineering 20:12.
Crossref
Abbas Parsaie, Hojatt Allah Yonesi & Shadi Najafian. (2015) Predictive modeling of discharge in compound open channel by support vector machine technique. Modeling Earth Systems and Environment 1:1-2.
Crossref
Issam A. Al-Khatib & Mustafa Gogus. (2014) Φ-indices approach and multivariable regression analysis for prediction of discharge in asymmetric straight compound open channel flows. Flow Measurement and Instrumentation 38, pages 82-91.
Crossref
Donald Knight. 2013. Experimental and Computational Solutions of Hydraulic Problems. Experimental and Computational Solutions of Hydraulic Problems 19 52 .
H.Md. Azamathulla & A. Zahiri. (2012) Flow discharge prediction in compound channels using linear genetic programming. Journal of Hydrology 454-455, pages 203-207.
Crossref
Burhan Unal, Mustafa Mamak, Galip Seckin & Murat Cobaner. (2010) Comparison of an ANN approach with 1-D and 2-D methods for estimating discharge capacity of straight compound channels. Advances in Engineering Software 41:2, pages 120-129.
Crossref
Galip Seckin, Mustafa Mamak, Serter Atabay & Mazen Omran. (2010) Discharge estimation in compound channels with fixed and mobile bed. Sadhana 34:6, pages 923-945.
Crossref
D. W. Knight & X. Tang. (2008) Zonal discharges and boundary shear in prismatic channels. Proceedings of the Institution of Civil Engineers - Engineering and Computational Mechanics 161:2, pages 59-68.
Crossref
Huasheng Liao & Donald W. Knight. (2007) Analytic stage–discharge formulae for flow in straight trapezoidal open channels. Advances in Water Resources 30:11, pages 2283-2295.
Crossref
S. Atabay, D. W. Knight & G. Seckin. (2005) Effects of overbank flow on fluvial sediment transport rates. Proceedings of the Institution of Civil Engineers - Water Management 158:1, pages 25-34.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.