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Optimization of oxygen transfer in clean water by fine bubble diffused air system and separate mixing in aeration ditches

机译:细气泡扩散空气系统和曝气槽中的单独混合优化了净水中氧气的转移

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The influence of design parameters on the transfer of oxygen was studied in different ring ditches equipped with fine bubble membrane air diffusers and separate mixing. The results produced evidence that the oxygen transfer efficiency (OTE) decreases when the air flow rate per diffuser increases. OTE increases asymptotically with the horizontal water flow (50% for velocity up to 0.5 m/sec). It increases also when the diffuser modules are brought closer together. Theoretical analysis enabled ranking of the impact of the design parameters on which the oxygen transfer is dependent, namely the interfacial area (a) and the oxygen transfer coefficient (K1). The increase in the air flow rate per diffuser essentially reduces the interfacial area by an increase in the diameter of the initial air bubbles and by a reduction of the contact time due to an acceleration of the "spiral flows" (vertical rotation of water flow). The horizontal rotation of water increases the interfacial area most probably by decreasing the diameter of the initial air bubbles and by a lengthening of the contact time resulting from a reduction in the large spiral flows. Bringing the diffuser modules closer together makes longer the contact time by a reduction in the large spiral flows. (C) 1998 Published by Elsevier Science Ltd. All rights reserved. [References: 19]
机译:在配有细气泡膜空气扩散器和单独混合的不同环形沟槽中研究了设计参数对氧气传输的影响。结果表明,当每个扩散器的空气流量增加时,氧气传输效率(OTE)降低。 OTE随水平水流渐近增加(速度达0.5 m / sec时为50%)。当扩散器模块靠近在一起时,它也会增加。通过理论分析,可以对氧气传输所依赖的设计参数(即界面面积(a)和氧气传输系数(K1))的影响进行排序。每个扩散器的空气流量的增加通过增加初始气泡的直径以及由于“螺旋流”的加速(水流的垂直旋转)而缩短了接触时间,从而实质上减小了界面面积。 。水的水平旋转最有可能通过减小初始气泡的直径以及通过减小大的螺旋流而延长接触时间来增加界面面积。将扩散器模块靠近在一起可减少大的螺旋流,从而延长接触时间。 (C)1998由Elsevier Science Ltd.出版。保留所有权利。 [参考:19]

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