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- W3145510219 abstract "Waste heat recovery from the flue gas of gas- fired boilers was studied experimentally by measuring the flow and heat transfer of air and water through six kinds of packing with saturated humid air as the simulated flue gas. The experiments measured the effects of inlet air temper- ature, inlet air velocity and circulating water flow rate on the flow and heat transfer. The results show that higher inlet air temperatures and lower inlet air velocities lower the flow resistance and increase the heat transfer coeffi- cient. The stainless steel packing had better surface wet- tability and larger thermal conductivity than the plastic packing, which enhanced the heat transfer between the water and the saturated moist air. When both the flow resistance reduction and the heat transfer enhancement were considered, the experimental results gave an optimal packing-specific surface area. A packed heat exchanger tower was designed for waste heat recovery from the flue gas of gas-fired boilers based on the experimental results which had better flow and heat transfer characteristics with lower pump and fan power consumption, more stable sys- tem operation and less thermal fluctuations compared with a non-packed heat transfer system with atomized water." @default.
- W3145510219 created "2021-04-13" @default.
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- W3145510219 date "2016-01-01" @default.
- W3145510219 modified "2023-09-27" @default.
- W3145510219 title "Experimental study of the flow and heat transfer of a gas-water mixture through a packed channel" @default.
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