水力发电学报 ›› 2016, Vol. 35 ›› Issue (7): 84-90.doi: 10.11660/slfdxb.20160709
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Abstract: Aeration tank is a core device in treatment of activated sludge waste water, and understanding its flow structure is crucial to improvement of its oxygen transfer and sewage treatment. An Euler-Euler multiphase flow model combined with a standard k-ε turbulence model (FLUENT 6.3) has been used in this study to simulate a typical plug-flow aeration tank. We analyzed the velocity distributions for two cases of different aeration tube installation, located at the tank centerplane and near a tank wall, and compared their velocity uniformity coefficients and velocity differences between the gas and liquid phases at characteristic cross sections. Our findings are that in the near-wall case the flow is more uniform and the velocity difference of two phases smaller, which is a favorable condition for flow mixing in the tank. In this case, the distribution of gas-phase volume fraction over the central longitudinal section at different time is more uniform. Thus, aeration tube installed near a tank wall is a case where both the flow structure and gas content are beneficial to oxygen and mass transfer between the two phases, leading to a higher rate of oxygen utilization and lower energy consumption. The results are useful for optimization of waste water treatment designs.
刘玉玲,白戈,邵世鹏,魏文礼. 曝气池曝气管布置方式对流速分布影响的数值模拟研究[J]. 水力发电学报, 2016, 35(7): 84-90.
LIU Yuling, BAI Ge, SHAO Shipeng, WEI Wenli. Numerical simulation of velocity distributions in aeration tanks influenced by different aeration tube arrangements[J]. JOURNAL OF HYDROELECTRIC ENGINEERING, 2016, 35(7): 84-90.
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链接本文: http://www.slfdxb.cn/CN/10.11660/slfdxb.20160709
http://www.slfdxb.cn/CN/Y2016/V35/I7/84
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