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Comparison of heat transfer performances of helix baffled heat exchangers with different baffle configurations
Authors:Cong Dong  Yaping Chen  Jiafeng Wu
Affiliation:1.School of Energy and Environment, Southeast University, Nanjing 210096, China;2.School of Light Industry, Zhejiang University of Science and Technology, Hangzhou 310023, China
Abstract:Numerical simulations were performed on flow and heat transfer performances of heat exchangers having six helical baffles of different baffle shapes and assembly configurations, i.e., two trisection baffle schemes, two quadrant baffle schemes, and two continuous helical baffle schemes. The temperature contour or the pressure contour and velocity contour plots with superimposed velocity vectors on meridian, transverse and unfolded concentric hexagonal slices are presented to obtain a full angular view. For the six helix baffled heat exchangers, the different patterns of the single vortex secondary flow and the shortcut leakage flow were depicted as well as the heat transfer properties were compared. The results show that the optimum scheme among the six configurations is a circumferential overlap trisection helix baffled heat exchanger with a baffle incline angle of 20° (20°TCO) scheme with an anti-shortcut baffle structure, which exhibits the second highest pressure drop Δpo, the highest overall heat transfer coefficient K, shell-side heat transfer coefficient ho and shell-side average comprehensive index ho/Δpo.
Keywords:Helix baffled heat exchanger Trisection baffle  Quadrant baffle  Continuous baffle  Circumferential overlap baffle  Secondary flow  Heat transfer  Numerical simulation
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