[1] Hager, W.H., Dupraz, P.A. (1985). Discharge characteristics of local, discontinuous contractions. Journal of Hydraulic, 1985, 23(5), 421-433
[2] Yasuda, Y., Hager Willi, H. (1995). Hydraulic jump in channel contraction. Canadian Journal of Civil Engineering, 22(5), 925-933.
[3] Reinauer, R., Hager Willi, H. (1998). Supercritical flow in chute contraction. Journal of Hydraulic Engineering, 124(1), 55-6
[4] Wu, B., Molinas, A. (2001). Choked flows through short contractions. Journal of Hydraulic Engineering, 127(8), 657-6 .62
[5] Jan, C. D., Chang, C. J. (2009). Hydraulic jumps in an inclined rectangular chute contraction. Journal of hydraulic engineering, 135(11), 949-958.
[6] Sadeghi, H., Daneshfaraz, R., Behmanesh, J., Nikpour, M. (2015). The effect of the shape of walls of expansion on the characteristics of hydraulic jump. Sharif Journal of Civil Engineering, 31 (2), 57-62.
[7] Daneshfaraz, R., Sadeghi, H., RezazadehJoudi, A., & Abraham, J. (2017). Experimental investigation of hydraulic jump characteristics in contractions and expansions. Sigma: Journal of Engineering & Natural Sciences, 35(1), p87-98. 12p.
[8] Daneshfaraz, R., Rezazadehjoudi, A. & Abraham, J. (2017). Numerical investigation on the effect of sudden contraction on flow behavior in a 90-degree bend. KSCE J Civ Eng 22, 603–612
[9] Daneshfaraz, R., Rezazadeh joudi, A., Sadeghfam, S. (2018). Experimental Investigation of Energy Dissipation in the Sudden Choked Flow with Free Surfaces. Journal of Civil and Environmental Engineering, 48.2(91), 101-108.
[10] Daneshfaraz, R., Sadeghfam, S., & Mirzaeereza, R. (2019). Experimental Study of Expanding Effect and Sand-Roughened Bed on Hydraulic Jump Characteristics. Iranian Journal of Soil and Water Research, 50(4), 885-896 (In Persian).
[11] Nayebzadeh, B., Lotfollahi-yaghin, M., Daneshfaraz, R. (2019). Experimental study of Energy Dissipation at a Vertical Drop Equipped with Vertical Screen with Gradually Expanding at the Downstream. Amirkabir Journal of Civil Engineering, 52(12), 7-7. DOI: 10.22060/ceej.2019.16493.6265 (In Persian).
[12] Daneshfaraz, R., Aminvash, E., Esmaeli, E., Sadeghfam, S., Abraham, J. (2020). Experimental and numerical investigation for energy dissipation of supercritical flow in sudden contractions. Journal of Groundwater Science and Engineering, 8(4), 396-406
[13] Daneshfaraz, R., MajediAsl, M., Mirzaee, R., Tayfur, G. (2020). Hydraulic jump in a rough sudden symmetric expansion channel. AUT Journal of Civil Engineering, -. doi: 10.22060/ajce.2020.18227.5667 (In Persian).
[14] Daneshfaraz, R., Aminvash, E., Abbaszadeh, H. (2021). Numerical Simulation of Energy Dissipation in Crescent-Shaped Contraction of the Flow Path. Iranian Journal of Soil and Water Research, 52(5), 1299-1314. (In Persian).
[15] Nayebzadeh, B., Lotfollahi-yaghin, M., Daneshfaraz, R. (2021). Numerical Investigation of Hydraulic Characteristics of Vertical Drops with Screens and Gradually Wall Expanding. Amirkabir Journal of Civil Engineering, 53(8), 4-4. DOI: 10.22060/ceej.2020.17779.6671 (In Persian).
[16] Rajaratnam, N. (1968). Hydraulic Jumps on Rough Beds, Trans. Engineering Inst. Canada, 11(a-2), 1-8.
[17] Izadjoo, F., Shafaei Bajestan, M., BINA, M. (2005). Hydraulic Jump Characteristics on A Trapezoidal Corrugated Bed. The Scientific Journal of Agriculture (SJA), 27, 107-122
[18] Tokyay N. D. 2005. Effect of channel bed corrugations on hydraulic jumps. EWRI. Water & Environmental Resources Congress. Anchorage. Alaska. USA. 8 p
[19] Abbaspour, A. Hosseinzadeh Dalir, A. Farsadizadeh D. and Sadraddini, A. A. (2009). Effect of sinusoidal corrugated bed on hydraulic jump characteristics. Journal of Hydro-environment Research. 3 (2), 109-117.
[20] Elsebaie I. H. and Shabayek Sh. (2010). Formation of hydraulic jumps on corrugated beds.International Journal of Civil & Environmental Engineering, 10(01): 37-47.
[21] Tokyay, N.D., Evcimen, T.U., and Şimşek, C. 2011. Forced Hydraulic Jump on Non protruding Rough Beds. Can. J. Civil Eng. 38. 1136-1144
[22] Esfahani, M., & Bejestan, M. S. (2012). Effect of Roughness Height on the Length of B jump at an Abrupt Drop. International Research Journal of Applied and Basic Sciences, 3, 2757-2762.
[23] Neisi, K., & Shafai, B. M. (2013). Characteristics of S-jump on Roughened Bed Stilling Basin. Journal of Water Sciences Research, 5(2), 25-34.
[24] Badizadegan, R., Saneie, M., and Esmaili, K. (2014). Comparison of Hydraulic Jump Characteristics on Different Types of Corrugated Beds. Iran. J. Irrig. Drain. 8(2), 220-232.
[25] Daneshfaraz, R., Majedi Asl, M., Mirzaee, R., Parsamehr, P. )2020(. Laboratory study of the effect of rough bed with non-continuous trapezoidal elements on hydraulic jump characteristics in a non-prismatic rectangular channel. Sharif Journal Civil Engineering, 36 (2), 119-128 (In Persian).
[26] Daneshfaraz, R., Aminvash, E., Di Francesco, S., Najibi, A., & Abraham, J. (2021). Three-Dimensional Study of the Effect of Block Roughness Geometry on Inclined Drop. Journal of Numerical Methods in Civil Engineering, 6(1), 1-9.
[27] Daneshfaraz, R., Najibi, A. (2021). Experimental Investigation of Supercritical Flow Energy Dissipation in Sudden Contraction with Wall Roughness. Journal of Hydraulics,-. DOI: 10.30482/jhyd.2021.290706.1532