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Simulation of buoyancy-induced turbulent flow from a hot horizontal jet
作者姓名:El-AMIN M. F.  SUN Shuyu  SALAM Amgad
摘    要:Experimental visualizations and numerical simulations of a horizontal hot water jet entering cold water into a rectangular storage tank are described. Three different temperature differences and their corresponding Reynolds numbers are considered. Both experimental visualization and numerical computations are carried out for the same flow and thermal conditions. The realizable k-e model is used for modeling the turbulent flow while the buoyancy is modeled using the Boussinesq approximation. Polynomial approximations of the water properties are used to compare with the Boussinesq approximation. Numerical solutions are obtained for unsteady flow while pressure, velocity, temperature and turbulence distributions inside the water tank as well as the Froude number are analyzed. The experimental visualizations are performed at intervals of five seconds for all different cases. The simulated results are compared with the visualized results, and both of them show the stratification phenomena and buoyancy force effects due to temperature difference and density variation. After certain times, depending on the case condition, the flow tends to reach a steady state.

关 键 词:数值模拟  水平射流  湍流  浮力  温度差异  近似模型  时间间隔  多项式近似
收稿时间:14 September 2013

Simulation of buoyancy-induced turbulent flow from a hot horizontal jet
El-AMIN M. F.,SUN Shuyu,SALAM Amgad.Simulation of buoyancy-induced turbulent flow from a hot horizontal jet[J].Journal of Hydrodynamics,2014,26(1):104-113.
Authors:EL-AMIN  M  F  SUN Shuyu  SALAM Amgad
Affiliation:Computational Transport Phenomena Laboratory CTPL, Division of Physical Sciences and Engineering, King Abdullah University of Science and Technology, Thuwal 23955-6900, Kingdom of Saudi Arabia
Abstract:Experimental visualizations and numerical simulations of a horizontal hot water jet entering cold water into a rectangular storage tank are described. Three different temperature differences and their corresponding Reynolds numbers are considered. Both experimental visualization and numerical computations are carried out for the same flow and thermal conditions. The realizable k – ? model is used for modeling the turbulent flow while the buoyancy is modeled using the Boussinesq approximation. Polynomial approximations of the water properties are used to compare with the Boussinesq approximation. Numerical solutions are obtained for unsteady flow while pressure, velocity, temperature and turbulence distributions inside the water tank as well as the Froude number are analyzed. The experimental visualizations are performed at intervals of five seconds for all different cases. The simulated results are compared with the visualized results, and both of them show the stratification phenomena and buoyancy force effects due to temperature difference and density variation. After certain times, depending on the case condition, the flow tends to reach a steady state.
Keywords:turbulent flow  realizablc k - e turbulence model  heat transfer  jet  heat storage
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