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Experimental investigation on behavior of multiple vertical buoyant jets discharged into a stagnant ambient

KSCE journal of civil engineering, v.17 no.7, 2013년, pp.1820 - 1829  

Lyu, Siwan ,  Seo, Il Won ,  Kim, Young Do

초록이 없습니다.

참고문헌 (20)

  1. J G Cervantes de Gortari 1978 An experimental study of the flapping motion of a turbulent plane jet Cervantes de Gortari, J. G. (1978). An experimental study of the flapping motion of a turbulent plane jet, PhD Thesis, School of Mechanical Engineering, Purdue University, West Lafayette, Indiana, USA. 

  2. M J Davidson 1989 The behaviour of single and multiple horizontally-discharged buoyant flows in a non-turbulent coflowing ambient fluid Davidson, M. J. (1989). The behaviour of single and multiple horizontally-discharged buoyant flows in a non-turbulent coflowing ambient fluid, Report No. 89-3, Department of Civil Engineering, University of Canterbury, Christchurch, New Zealand. 

  3. Journal of Hydraulic Engineering, ASCE M J Davidson 126 7 513 2000 10.1061/(ASCE)0733-9429(2000)126:7(513) Davidson, M. J. and Pun, K. L. (2000). “Locating discharges trajectories in still and moving ambient fluids.” Journal of Hydraulic Engineering, ASCE, Vol. 126, No. 7, pp. 513-524. 

  4. AIAA Journal, AIAA P E Dimotakis 24 11 1791 1986 10.2514/3.9525 Dimotakis, P. E. (1986). “Two-dimensional shear-layer entrainment.” AIAA Journal, AIAA, Vol. 24, No. 11, pp. 1791-1796. 

  5. Journal of Fluid Mechanics T Dracos 241 587 1992 10.1017/S0022112092002167 Dracos, T., Giger, M., and Jirka, G. H. (1992) “Plane turbulent jets in a bounded fluid layer.” Journal of Fluid Mechanics, Vol. 241, pp. 587-614. 

  6. Physics of Fluids V M Goldschmidt 16 3 354 1973 10.1063/1.1694348 Goldschmidt, V. M. and Bradshaw, P. (1973). “Flapping of a plane jet.” Physics of Fluids, Vol. 16, No. 3, pp. 354-355. 

  7. Physics of Fluids V M Goldschmidt 26 2 428 1983 10.1063/1.864155 Goldschmidt, V. M., Moallemi, M. K., and Oler, J. W. (1983). “Structures and flow reversal in turbulent plane jets.” Physics of Fluids, Vol. 26, No. 2, pp. 428-432. 

  8. J O Hinze 1975 Turbulence 2nd Ed. Hinze, J. O. (1975). Turbulence, 2nd Ed., McGraw-Hill Book Co., New York. 

  9. Journal of Fluid Mechanics G H Jirka 94 2 275 1979 10.1017/S0022112079001038 Jirka, G. H. and Harleman, D. R. F. (1979). “Stability and mixing of a vertical plane buoyant jet in confined depth.” Journal of Fluid Mechanics, Vol. 94, No. 2, pp. 275-304. 

  10. Aeronautical Quarterly Knystautas 15 311 1964 10.1017/S0001925900002985 Knystautas (1964). “The turbulent jet from a series of holes.” Aeronautical Quarterly, 15, pp. 311-326. 

  11. N E Kotsovinos 1975 A study of the entrainment and turbulence in a plane buoyant jet Kotsovinos, N. E. (1975). A study of the entrainment and turbulence in a plane buoyant jet, PhD Thesis, W. M. Keck Laboratory of Hydraulic and Water Resources, California Institute of Technology, Pasadena, California, USA. 

  12. Journal of Fluid Mechanics A C H Lai 708 539 2012 10.1017/jfm.2012.332 Lai, A. C. H. and Lee, J. H. W. (2012). “Dynamic interaction of multiple buoyant jets.” Journal of Fluid Mechanics, Vo. 708, pp. 539-575. 

  13. S Lyu 2003 Behavior of merging buoyant jets discharged from unidirectional diffuser Lyu, S. (2003). Behavior of merging buoyant jets discharged from unidirectional diffuser, PhD Thesis, School of Civil, Urban and Geosystems, Seoul National University, Korea. 

  14. Journal of Hydraulic Engineering, ASCE B Pani 109 1 245 1983 Pani, B. and Dash, R. (1983). “Three dimensional single and multiple free jets.” Journal of Hydraulic Engineering, ASCE, Vol. 109, No. 1, pp. 245-269. 

  15. Journal of Fluid Mechanics P N Papanicolaou 195 341 1988 10.1017/S0022112088002447 Papanicolaou, P. N. and List, E. J. (1988). “Investigations of round vertical turbulent buoyant jets.” Journal of Fluid Mechanics, Vol. 195, pp. 341-391. 

  16. D A Papps 1995 Merging buoyant jets in stationary and flowing ambient fluids Papps, D. A. (1995). Merging buoyant jets in stationary and flowing ambient fluids, PhD Thesis, Dept. of Civil Engineering, University of Canterbury, Cristchurch, New Zealand. 

  17. A F Pearce 1966 CSIR Report MEG Critical reynolds number for fully-developed turbulence in circular submerged water jets Pearce, A. F. (1966). Critical reynolds number for fully-developed turbulence in circular submerged water jets, CSIR Report MEG 475, National Mechanical Engineering Research Institution, Council for Scientific and Industrial Research, Pretario, South Africa. 

  18. H J Wang 1999 XXVIII IAHR Congress, Graz, Austria (CD-ROM) Wang, H. J. and Davidson, M. J. (1999). “Modeling merging jets in a coflowing environment.” XXVIII IAHR Congress, Graz, Austria (CD-ROM). 

  19. I R Wood 1993 10.1142/1649 Ocean disposal of wastewater Wood, I. R., Bell, R. G., and Wilkinson, D. L. (1993). Ocean disposal of wastewater, World Scientific Publishing Co. Pte. Ltd. 

  20. Physics of Fluids I Wygnanski 14 7 1309 1971 10.1063/1.1693606 Wygnanski, I. and Gutmark, E. (1971). “Lateral motion of twodimensional jet boundaries.” Physics of Fluids, Vol. 14, No. 7, pp. 1309-1310. 

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