An experimental study on plunging depth of density currents

Hassan GOLEIJ , Amir Hamzeh HAGHIABI , Abbas PARSAIE

Front. Struct. Civ. Eng. ›› 2017, Vol. 11 ›› Issue (4) : 388 -395.

PDF (1144KB)
Front. Struct. Civ. Eng. ›› 2017, Vol. 11 ›› Issue (4) : 388 -395. DOI: 10.1007/s11709-017-0417-7
RESEARCH ARTICLE
RESEARCH ARTICLE

An experimental study on plunging depth of density currents

Author information +
History +
PDF (1144KB)

Abstract

Mass density of the current flows is the one of the important problem in the hydraulics of the dam reservoir. Plunge point occurs when the mass density current penetrates in the stagnant fluid. Recognition the place of this point is very important because of clearing the boundary of the density current flow and ambient fluid. In this study the influences of bed slope and hydraulic parameters on plunging depth were experimentally investigated. The results show that the slope has a minor effect on the plunging depth. The height of plunging depth is increased by increasing the density of the current flow. Also increasing the densimetric Froude number caused of decreasing the plunging depth. Finally an equation was proposed to estimate the plunging depth using as function of flow characteristics.

Keywords

dense current / plunge point / Densimetric Froude Number / dam reservoirs

Cite this article

Download citation ▾
Hassan GOLEIJ, Amir Hamzeh HAGHIABI, Abbas PARSAIE. An experimental study on plunging depth of density currents. Front. Struct. Civ. Eng., 2017, 11(4): 388-395 DOI:10.1007/s11709-017-0417-7

登录浏览全文

4963

注册一个新账户 忘记密码

References

[1]

Parker GToniolo H. Note on the analysis of plunging of density flows. Journal of Hydraulic Engineering2007133(6): 690–694

[2]

Akiyama JStefan  H. Turbidity current with erosion and deposition. Journal of Hydraulic Engineering1985111(12): 1473–1496

[3]

Hebbert BImberger  JLoh I . Collie River underflow into the Wellington Reservoir.Journal of Hydraulics Division1979, 105(5): 533–545

[4]

Wunderlich W O Elder R A . Mechanics of flow through man-made lakes, in man-made lakes: their problems and environmental effects. American Geophysical Union2013, 300–310

[5]

Singh BShah  C R. Plunging phenomenon of density currents in reservoirs. Houille Blanche197126(1): 59–64

[6]

Ghomeshi M. Reservoir Sedimentation Modeling. Dissertation for PhD Degree. University of Wollongong, 1995

[7]

Haghiabi A H. The study of bed slope effect on velocity and concentration profiles of density currents, in Water Engineering. Ahvaz: Shahid Chamran University, 2004, 270

[8]

Savage S BBrimberg  J. Analysis of plunging phenomena in water reservoirs. Journal of Hydraulic Research197513(2): 187–205

[9]

Basson G.Prediction of sediment induced density current formation in reservoirs. Proceedings of International Conference on Hydro-Science and Engineering, Berlin1998

[10]

Lee H YYu  W S. Experimental study of reservoir turbidity current. Journal of Hydraulic Engineering1997123(6): 520–528

[11]

Dallimore C J Imberger J Hodges B R . Modeling a plunging underflow. Journal of Hydraulic Engineering2004130(11): 1068–1076

[12]

Dai AGarcia  M H. Analysis of plunging phenomena. Journal of Hydraulic Research200947(5): 638–642

[13]

Huang HImran  JPirmez C . Numerical model of turbidity currents with a deforming bottom boundary. Journal of Hydraulic Engineering2005131(4): 283–293

[14]

Sutherland B R Kyba P J Flynn M R . Intrusive gravity currents in two-layer fluids. Journal of Fluid Mechanics2004514: 327–353

[15]

Singh JAkiyama  JShige-Eda M . Numerical simulation of axisymmetric gravity current induced by direct dumping of sediments. Proceedings of Hydraulic EnginEERING200549: 1399–1404

[16]

Barahmand NShamsai  A. Experimental and theoretical study of density jumps on smooth and rough beds. Lakes and Reservoirs: Research and Management201015(4): 285–306

[17]

Poudeh H TEmamgholizadeh  SFathi-Moghadam M . Experimental study of the velocity of density currents in convergent and divergent channels. International Journal of Sediment Research201429(4): 518–523

RIGHTS & PERMISSIONS

Higher Education Press and Springer-Verlag Berlin Heidelberg

AI Summary AI Mindmap
PDF (1144KB)

1805

Accesses

0

Citation

Detail

Sections
Recommended

AI思维导图

/