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曝气器的最优孔径分析
引用本文:汤利华[,] 孟广耀.曝气器的最优孔径分析[J].中国科学技术大学学报,2006,36(7):775-780.
作者姓名:汤利华[  ] 孟广耀
作者单位:[1]中国科学技术大学化学与材料科学学院,安徽合肥230026 [2]安徽建筑工业学院环境工程系,安徽合肥230022
摘    要:根据曝气过程中氧转移的有关理论,推导出需气量的表达式;并通过曝气过程中能量消耗的分析.导出动力消耗的表达式.通过计算分析得出,在一定的条件下,曝气器有最优孔径.一般水深在4m左右.曝气器的最优孔径最小.一定孔径的曝气器.存在最佳安装水深,最佳安装水深随曝气器孔径的增大而增长.水深较小时.宜选用孔径较小的曝气器;水深较大时,宜选用孔径较大的曝气器.一般情况下.采用浅水曝气是不利的.

关 键 词:曝气器  最优孔径  动力消耗  氧转移效率  最佳水深
文章编号:0253-2778(2006)07-0775-06
收稿时间:05 23 2005 12:00AM
修稿时间:05 18 2006 12:00AM

Analysis of optimum aperture of aerators
TANG Li-hua, MENG Guang-yao.Analysis of optimum aperture of aerators[J].Journal of University of Science and Technology of China,2006,36(7):775-780.
Authors:TANG Li-hua  MENG Guang-yao
Abstract:The equation of air demand was derived from the theory of oxygen transfer in aeration. By analysis of power consumption, the equation of power consumption was obtained. There exists the optimum aperture of aeration under some circumstance. The optimum aperture of an aerator is smallest at the water depth of 4 m. A given aperture has a correspondingly optimum water depth. The optimum water depth increases as the aperture of the aerator increases. Aerator with smaller apertures should be selected when water depth is low, and aerators with bigger apertures should be selected when water depth is high. Generally. shallow water aeration is not of high efficiency.
Keywords:aerator  optimum aperture  power assumption  oxygen transfer efficiency  optimum water depth
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