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- W4205659617 abstract "The numerical investigation was performed to analyze the film thickness and heat transfer characteristics over the horizontal round tube of the falling film evaporator. A three-dimensional model for the falling film flow and heat transfer was established, and the volume of fluid (VOF) method was applied to track the gas-liquid interface. The effects of different spray densities, saturation temperatures, and longitudinal inter-tube spacings (Γ, Tsat, s) on the falling film thickness (δ) and local heat transfer coefficient (h) were analyzed. Asymmetric circumferential distribution of δ is captured by the simulation results. The h reduces first and then rises slightly as the φ increases, and the maximum value appears in the impact point. Moreover, in the circumferential direction, φ=70∘ is the critical value for the variation of δ under different s, and the increment of Γ and Tsat leads to the increase in δ and h. In the axial direction, with increasing the Γ, the δ and the h increase, and the axial size of the crest zone tends to narrow. In addition, the increase of s promotes the rise of h. Meanwhile, the δ varies slightly in the crest zone, and it decreases obviously in the stable zone." @default.
- W4205659617 created "2022-01-25" @default.
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- W4205659617 date "2022-04-01" @default.
- W4205659617 modified "2023-10-11" @default.
- W4205659617 title "Numerical investigation of the falling film thickness and heat transfer characteristics over horizontal round tube" @default.
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- W4205659617 doi "https://doi.org/10.1016/j.ijmultiphaseflow.2022.103977" @default.
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