1] Kariminia A., Salehi Neyshabouri S.A., “Numerical Simulation of the Afflux Phenomena in Bridge Piers”, Journal of Civil Engr. And Survey (Tech. Faculty), 5(4), 1390, Pp. 487-493 (In Persian).
[2] Hassanzadeh Y., Hakimzadeh H., Alami M., Sarveram H., “Study of Flow Backwater due to the Bridge Pier in Subcritical Flows by the Experimental and Numerical Models”, Technical Faculty of Tabriz University Journal, 36(3), 1387, Pp.15-22 (In Persian).
[3] Montazer Gh., Qhodsian M., Nasiri F., Javan M., Eqbalzadeh A., “Intelligent Prediction of the Afflux due to Bridge Pier Using Radial Basis Function ANN”, Modares Tech. and Engr. Journal, 1382, 14, Pp. 49-62 (In Persian).
[4] Hamzei M., Eqbalzadeh M., Amini S.A., “Study of the Interaction of the Mean Flow Field around Submerged Bridge Deck with the Channel Bed and Free Surface”, Journal of Iranian Water Research, 6(10), Pp. 67-74 (In Persian).
[5] Roussinova V., "Turbulent structures in smooth and rough open channel flows: effect of depth", Electronic Thesis and Dissertations, Paper 94, 2009.
[6] Prohaska S., Jancke T., Westrich B., "Model Based Estimation of Sediment Erosion in Groyne Fields Along the River Elbe", XXIVth Conference of the Danubian Countries, IOP Publishing, 2008.
[7] Mohamadi M.A., “The Effect of Channel Section Shape on the Shear Stress Distribution in the Free Channels”, Technical Faculty of Tabriz University Journal, 29(3), 1382, Pp.53-64 (In Persian).
[7] Mohamadi M.A., “Wall Shear Stress the Channels with Partially Full Circular Section”, Technical Faculty of Tabriz University Journal, 36(3), 1387, Pp.37-47 (In Persian).
[9] Rodriguez J.F., Garcia M.H., "Laboratory measurements of 3-D flow patterns and turbulence in straight open channel with rough bed", Journal of Hydraulic Research, 46(4), 2008, Pp: 454–465.
[[1]0] Kirkgöz M., "Turbulent Velocity Profiles for Smooth and Rough Open Channel Flow", Journal of Hydraulic Engineering, 115(11), 1989, Pp: 1543–1561.
[11] Abo A,. Greaves D., "A Three-Dimensional Flow Model for Different Cross-Section High-Velocity Channels", PhD thesis, Plymouth University, 2013.
[12] Zorratipour M., “Estimation of the Hydraulic Jump length and Determination of th Flow Surface Profile via Air Entrance Theory into the Hydraulic Jump and its Numerical Modeling”, Engineer’s Message Journal, 1390, (54), 54-61 (In Persian).
[13] Mohajeri S.H., Salehi Neyshabouri S.A., Safarzadeh A., “Experimental Study of the Turbulent Flow Pattern in the Straight Channel”, 10th Iranian Hydrulic Conf., Guilan, 1390 61 (In Persian).
[14] Southard J., "Introduction to Fluid Motions, Sediment Transport, and Current-Generated Sedimentary Structures", MIT Opencourseware, 2006.
[15] Mehraein M., Ghodsian.M. SalehiNeyshaboury. S.A.A., "Local Scour Due to Inclined Circular Wall Jet, Proceedings of ICE, Journal of Water Management", 164(3), 2011, Pp: 111-122.
[16] Chanson, H. , "Turbulent Shear Stresses in Hydraulic Jumps and Decelerating Surges: An Experimental Study", Earth Surface Processes and Landforms, 36(2), 2011, Pp: 180-189.
[17] Jia Y., Wang S.,"CCHE2D: Two-dimensional Hydrodynamic and Sediment Transport Model For Unsteady Open Channel Flow Over Loose Bed", Technical Report no. NCCHE-TR-2001-1, 2001.
[18] Atabay S, Knight D.W., "Bridge afflux experiments in compound channels", Technical paper presented for JBA Consulting Engineers & Scientists and the Environment Agency, 2002.