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Enhanced heat transfer performances of molten salt mixed convection in a vertical annular duct
Authors:Shiquan He  Jing Ding  Jianfeng Lu  Weilong Wang  Jianping Yang
Institution:2. Academy of Building Energy Efficiency, Guangdong Provincial Key Laboratory of Building Energy Efficiency and Application Technology, Guangzhou University, Guangzhou, 510006, China
3. School of Chemistry and Chemical Engineering, South China University of Technology, Guangzhou, 510640, China
1. School of Engineering, Sun Yat-sen University, Guangzhou, 510006, China
Abstract:The mixed convection heat transfer of upward molten salt flow in a vertical annular duct is experimentally and numerically studied. The heat transfer performances of mixed convection are measured under Reynolds number 2,500–12,000 and inlet temperature 300–400 °C, and Nusselt number of molten salt flow with cooled inner wall monotonically increases with buoyancy number. The mixed convection is further simulated by low-Reynolds number k-ε model and variable properties, and the heat transfer tendency from numerical results agrees with that from experiments. At low Reynolds number, the natural convection plays more important role in the mixed convection. As the buoyancy number rises, the thickness of flow boundary layer near the inner wall increases, while the effective thermal conductivity remarkably rises, so the enhanced heat transfer of mixed convection is mainly affected by the effective thermal conductivity due to turbulent diffusion.
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