Application of Reynolds flux modeling in CFD simulation of 45$$^{\circ}$$ inclined negatively buoyant jets

Author(s):  
Sina Tahmooresi ◽  
Davoud Ahmadyar
Fluids ◽  
2020 ◽  
Vol 5 (4) ◽  
pp. 232
Author(s):  
Panos N. Papanicolaou ◽  
George C. Stamoulis

Turbulent round buoyant jets and fountains issuing vertically into a linearly density-stratified calm ambient have been investigated in a series of laboratory experiments. The terminal (steady-state) height of rise and the mean elevation of subsequent horizontal spreading have been measured in positively buoyant jets (at source level), including pure momentum jets and plumes, as well in momentum-driven negatively buoyant jets (fountains). The results from experiments confirmed the asymptotic analysis that was based on dimensional arguments. The normalized terminal height and spreading elevation with respect to the elevation of injection of momentum-driven (positively) buoyant jets and fountains attained the same asymptotic values. The numerical results from the solution of entrainment equations, using an improved entrainment coefficient function, confirmed the results related to buoyancy dominant flows (plumes), while their predictions in momentum-driven flows were quite low if compared to measurements.


2011 ◽  
Vol 52 (1) ◽  
pp. 261-271 ◽  
Author(s):  
A. Geyer ◽  
J. C. Phillips ◽  
M. Mier-Torrecilla ◽  
S. R. Idelsohn ◽  
E. Oñate

Water ◽  
2018 ◽  
Vol 10 (6) ◽  
pp. 726 ◽  
Author(s):  
Simone Ferrari ◽  
Maria Badas ◽  
Giorgio Querzoli

Author(s):  
M A Azim

Two types of isothermal free jets, named positively and negatively buoyant, have been studied numerically to discern the effect of surrounding temperatures on their flow dynamics. Turbulence closure in those jets was achieved by standard k - ε model. The governing equations were solved using Implicit θ-Scheme and Tridiagonal Matrix Algorithm. Calculations were made for the jets having constant temperature at 20 °C and by varying surrounding temperatures from 20°C to 1000°C. It is clear that negatively buoyant jets but not the positively buoyant jets are nearly invariant to the change in surrounding temperatures compared to non-buoyant jet. Change in fluid dynamical behaviour of positively buoyant jets due to surrounding temperature change seems promising as it may offer the advantages of fuel jets in high-temperature air combustion.


Water ◽  
2012 ◽  
Vol 4 (3) ◽  
pp. 750-768
Author(s):  
Raed Bashitialshaaer ◽  
Magnus Larson ◽  
Kenneth M. Persson

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