مراجع
[1] بهشتی ع.ا. عطایی آشتیانی ب. 1387."بررسی عددی الگوی جریان و آبشستگی در اطراف گروه شمع"، چهارمین کنگره ملی مهندسی عمران،دانشگاه تهران.
[2] ناجی ابهری م. قدسیان م. واقفی م.. پناهپور ن. 1388. "مطالعه آزمایشگاهی و عددی الگوی جریان حول آبشکن در قوس 90 درجه" ، هشتمین کنگره بینالمللی مهندسی عمران، دانشگاه شیراز.
]3[ نوروزی ح. صالحی نیشابوری س.ع.ا. نصیری صالح ف. آذردرخش م. 1388. "شبیهسازی سهبعدی عددی آبشستگی حول آبشکن"، مجله فنی و مهندسی مدرس، شماره 36، ص 13-22.
[4] Ataie-Ashtiani, B. Aslani-Kordkandi, A. (2012) “Flow field around side-by-side piers with and without a scour hole” European Journal of Mechanics B/Fluids, 152-166.
[5] Ataie-Ashtiani, B. and Beheshti, A.A.(2006) “Experimental Investigation of Clear-Water Local Scour at Pile Groups”; J. Hydraul. Eng. 132(10) 1100-1104.
[6] Breusers, H. N. C., Nicollet, G., and Shen, H. W, (1977) ‘‘Local scour around cylindrical piers.’’ J. Hydraul. Res., 15(3), 211–252.
[7] Brooks, H. N. (1963) discussion of “Boundary shear stresses in curved trapezoidal channels”, by A. T. Ippen and P. A. Drinker, J. Hydr. Eng., ASCE, Vol. 89, No. HY3.
[8] Dargahi, B. (1990) “Controlling mechanism of local scouring”; J. Hydraul. Eng. 116(10) 1197-1214.
[9] Hannah, C. R. (1978). “Scour at pile groups.” Research Rep. No. 28-3, Civil Engineering Dept., Univ. of Canterbury, Christchurch, New Zealand.
[10] Melville, B.W. and Raudkivi, A.J. ( 1977) .“Flow characteristics in local scour at bridge piers”.Journal of Hydraulic ResearchIAHR, 15(1):373-380.
[11] Olsen, N. R. B. (1999) “Computational Fluid Dynamics in Hydraulic and Sedimentation Engineering”, class notes, Division of Hydraulic and Environmental Engineering, The Norwegian University of Science and Technology.
[12] Olsen, N.R.B. (2011), “ A Three-dimensional numerical model for simulation of sediment movement in water intaks with multiblock option” Department of Hydraulic and environmental E ngineering, The Norwegian university of science and technology.
[13] Olsen N, Kjellesvig HM. (1998), ”Three dimensional numerical flow modeling for estimation of maximum local scour depth”. J Hydraul Res ;36(4):579590.
[14] Olsen N, Melaaen C. (1993)” Three-dimensional calculation of scour around cylinders”. J Hydr Eng;119(9):1048–54.
[15] Richardson, E. V., and Davis, S. R. (2001). “Evaluating scour at bridges.” Hydraulic Engineering Circular No. 18 (HEC-18), Rep. No. FHWA NHI 01-001, Federal Highway Administration, Washington, D.C.
[16] Salaheldin, M., Imran, J. and Chaudhry, M.H. (2004). "Numerical modeling of three-dimensional flow field around circular piers." Journal of Hydraulic Engineering., ASCE, Vol. 130(2):91-100.
[17] Sumer, B. M. and Fredsøe, J. (2002) “The mechanics of scour in the marine environment.” World Scientific Publication Co. Pte. Ltd., Advanced Series on Ocean Engineering, Vol. 17.
[18] Van Rijn, L.C. (1987), “Mathematical modelling of morphological processes in the case of suspended sediment transport”, Doctoral thesis, Hydr. and Geotechn. Engrg. Div., Delft Univ. of Technol., Delft.
[19] Wilcox, D. C. (2000) “Turbulence modelling for CFD”, DCW industries, ISBN. 0-9636051-51.