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Liangjun Zhang

Researcher at Shanghai Jiao Tong University

Publications -  6
Citations -  49

Liangjun Zhang is an academic researcher from Shanghai Jiao Tong University. The author has contributed to research in topics: Combined forced and natural convection & Field (physics). The author has an hindex of 5, co-authored 6 publications receiving 44 citations.

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Experimental study and numerical models assessment of turbulent mixed convection heat transfer in a vertical open cavity

TL;DR: In this paper, the authors investigated flow and heat transfer in a vertical open cavity with turbulent mixed convection and found that the secondary upward flow was found near the heated walls, and three two-equation RANS turbulence models, RNG k-e model, L-B Low Re k-E model and SST k-ω model, were used in the numerical simulation with the same boundary conditions as experiments.
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Numerical simulation of conjugate turbulent mixed convection in an open cavity: Evaluation of different wall heat conduction models

TL;DR: In this paper, the flow structure and temperature field of the conjugate turbulent mixed convection in an open cavity were investigated numerically and the results including the local and average temperatures as well as the average temperatures were obtained.
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Computational investigation on nitrogen displacement process in a thermal environment simulation chamber

TL;DR: In this article, the computational fluid dynamics method is used to study the transient nitrogen displacement process of acquiring ultra-low dew point temperature during thermal environment simulation, and a three-dime model is presented.
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Evaporation of water film in a three-dimensional vertical rectangular channel by laminar mixed convection

TL;DR: In this article, a numerical analysis of heat and mass transfer with film evaporation by laminar mixed convection in a vertical three-dimensional rectangular channel was conducted, where the authors investigated the outcome of inlet dry nitrogen temperature, temperature of wetted wall, Reynolds number and aspect ratio on the heat transfer of thin water film along the isothermal walls.