Abbaspour, A., Hosseinzadeh-Dalir, A., Farsadizadeh, D. and Sadradini, A. 2008. Effect of sinusoidal corrugated bed on characteristics of hydraulic jump. Water Soil Sci. 19, 13-26. (in Persian)
Achour, B. and Debabèche, M. 2003. Control of hydraulic jump by sill in triangular channel. J. Hydraul. Res. 41(3): 319-325.
Argyropoulos, P. A. 1962. General solution of the hydraulic jump in sloping channels. J. Hydraul. Div. 88(4): 61-75.
Chow, V. T. 1959. Open Channel Hydraulics. McGraw-Hill. New York.
Debabèche, M. and Achour, B. 2007. Effect of sill in the hydraulic jump in a triangular channel. J. Hydraul. Res. 45(1): 135-139.
Esmaeili-Varaki, M. and Omid, M. H. 2007. Determination of characteristics of diverging hydraulic jump in rectangular and trapezoidal sections. Iranian Water Res. J. 2(2): 27-35. (in Persian)
Esmaeili-Varaki, M., Sahebi, F., Navabian, M. and Amiri, Z. 2013. Economical optimization of diverging stilling basins with trapezoidal and rectangular sections. J. Water Soil Conserv. 21(5): 49-70.(in Persian)
Forester, J. W. and Skrinde, R. A. 1950. Control of the Hydraulic Jump by Sills. T. Am. Soc. Civil Eng. ASCE. 115(1): 973-987.
Gord-Noshahri, A., Omid, M. H. and Kouchakzadeh, S. 2009. Effect of broad crested sill on the characteristics of hydraulic jump in diverging stilling basins. Iranian Water Res. J. 41(1): 79-85.(in Persian)
Hager, W. H. and Li, D. 1992. Sill-controlled energy dissipater. J. Hydraul. Res. 30(2): 165–181.
Hager, W. H. and Wanoschek, R. 1987. Hydraulic jump in triangular channel. J. Hydraul. Res. 25(5):
549-564.
Hamidifar, H., Omid, M. H. and Farhoudi, J. 2011. Hydraulic jump in a triangular section and comparison with rectangular section. J. Water Soil Sci. (JWSS). 14(54): 27-36. (in Persian)
Kasi, A., Esmaeili-Varaki, M. and Farhoudi, J. 2013. Development of explicit equations for estimating sequent depth ratio on adverse slopes. Iranian Water Res. J. 8(15): 155-166. (in Persian)
Khorshidi, M., Vatankhah, A. and Omid, M. H. 2015. An explicit equation for calculating sill height in trapezoidal stilling basins. Iranian Water Res. J. 18: 13-22. (in Persian)
Omid, M. H., Esmaeili-Varaki, M. and Narayana, R. 2007. Gradually expanding hydraulic jump in a trapezoidal channel. J. Hydraul. Res. 45(4): 512-518.
Omid, M. H., Gord-Noshahri, A. and Kouchakzadeh, S. 2010. Sill-controlled hydraulic jump in a gradually expanding channels. Proceedings of the Institution of Civil Engineers - Water Management. 163(10): 515-522.
Parsamehr, P., Farsadizadeh, D. and Hosseinzadeh-Dalir, A. 2012. Effect of end sill and artificial roughness on the characteristics of hydraulic jump over adverse slopes. J. Water Soil. 27(3): 581-591. (in Persian)
Rajaratnam, N. 1964. The forced hydraulic jump. Water Power. 16(1): 14-19.
Rajaratnam, N. 1967. Hydraulic Jumps, Advances in Hydroscience. Vol. 4. Academic Press. New York.
Rashwan, I. M. H. 2013. Analytical solution to problems of hydraulic jump in horizontal triangular channels. Ain Shams Eng. J. 4(3): 365-368.
Sandover, J. A. and Holmes, P. 1962. The hydraulic jump in trapezoidal channels. Water Power. 14(11): 445-449.
Silvester, R. 1964. Hydraulic jump in all shapes of horizontal channels. J. Hydraul. Div. 90(1): 23-56.
Vatankhah, A. R. and Omid, M. H. 2010. Direct solution to problems of hydraulic jump in horizontal triangular channels. Appl. Math. Lett. 23(9): 1104-1108.