2019
DOI: 10.1016/j.energy.2018.12.177
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Thermal-hydraulic characteristics of supercritical pressure CO2 in vertical tubes under cooling and heating conditions

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Cited by 57 publications
(4 citation statements)
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“…These two sets of validations demonstrate that the selected SST k − ω model can reliably reproduce data for both sCO 2 heat transfer in horizontal smooth tubes and the pressure drop and heat transfer heat transfer simulations [40][41][42][43], including the most recent work by Li et al [28,29,44] on the supercritical flow and heat transfer with internal helical-rib roughness where good accuracy was demonstrated. Therefore, this model has been used in this paper.…”
Section: Fig 2 Grids Used For Validations Against Experiments By Adeb...mentioning
confidence: 63%
“…These two sets of validations demonstrate that the selected SST k − ω model can reliably reproduce data for both sCO 2 heat transfer in horizontal smooth tubes and the pressure drop and heat transfer heat transfer simulations [40][41][42][43], including the most recent work by Li et al [28,29,44] on the supercritical flow and heat transfer with internal helical-rib roughness where good accuracy was demonstrated. Therefore, this model has been used in this paper.…”
Section: Fig 2 Grids Used For Validations Against Experiments By Adeb...mentioning
confidence: 63%
“…When HTD occurs, it might lead to the heating surface failure because of burning out. Hence, great attention has been paid on HTD [ 13 , 14 , 15 ]. At present, the mechanism of HTD is mainly studied by numerical methods and experiments.…”
Section: Introductionmentioning
confidence: 99%
“…The heat transfer deterioration occurs in the vertical tube, while the heat transfer performance is better in the horizontal tube and helical tube. Guo [9] numerically studied the heat transfer characteristics of S-CO2 flowing in a tube under heating conditions. The results show that the buoyancy effect improves the downward flow heat transfer performance, while deteriorates that for upward flow under heating conditions, and it is found that decreasing the tube diameter and heat flux can alleviate heat transfer deterioration.…”
Section: Introductionmentioning
confidence: 99%