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基于Fluent的闭合环型缺氧反应器构造优化
引用本文:杨崇斌, 王远, 卓宁泽, 金锡标. 基于Fluent的闭合环型缺氧反应器构造优化[J]. 环境工程学报, 2015, 9(2): 553-558. doi: 10.12030/j.cjee.20150209
作者姓名:杨崇斌  王远  卓宁泽  金锡标
作者单位:1.华东理工大学环境工程研究所, 上海 200237
基金项目:国家环境保护公益性行业科研专项(201309047)
摘    要:为提高闭合环型缺氧反应器混合效果,选用基于Fluent软件的三维RNG k-ε紊流数学模型对闭合环型缺氧反应器进行流场模拟,以池底可能淤积面积比例作为混合效果的评价标准,分别从导流直墙长度、导流墙偏心距离及水下推进器偏置等3个方面对缺氧池的系统构造的最优设置进行研究。结果显示,在相同推进器功率下,导流直墙长度2.0 m为佳,导流墙偏心距离0.5 m为佳,推进器向内偏置0.5 m为佳。该研究方法及其结果可以作为闭合环型缺氧反应器的设计依据,具有较佳的技术参考价值。

关 键 词:Fluent   闭合环型反应器   水力混合   导流墙   水下推进器
收稿时间:2014-11-04

Improvement on structure of a closed-loop anoxic tank based on Fluent software
Yang Chongbin, Wang Yuan, Zhuo Ningze, Jin Xibiao. Improvement on structure of a closed-loop anoxic tank based on Fluent software[J]. Chinese Journal of Environmental Engineering, 2015, 9(2): 553-558. doi: 10.12030/j.cjee.20150209
Authors:Yang Chongbin  Wang Yuan  Zhuo Ningze  Jin Xibiao
Affiliation:1.Research Institute of Environmental Engineering, East China University of Science and Technology, Shanghai 200237, China
Abstract:In order to improve the mixing effect of closed-loop anoxic reactor, a three dimensional RNG k-ε turbulence mathematical turbulence model was used which was based on Fluent to simulate the flow filed of closed-loop anoxic reactor. Percentage of the silting area at bottom layer was used as standard of mixing effect and optimum setting of closed-loop anoxic reactor was analyzed from the following three aspects: straight length of diversion wall, off-center distance of diversion wall and offset distance of submerged impeller. The optimum results are as follows: under the fixed power, the optimum length of the diversion straight wall is 2.0 meters; the optimum distance of the off-central for the diversion wall is 0.5 meters; the optimum installation position of the submerged impeller is offset 0.5 meters from the center of the straight. The method and results in this study have high technology reference values, which can be used as the design reference for closed-loop anoxic reactor.
Keywords:Fluent  closed-loop reactor  hydraulic mixing  diversion wall  submerged impeller
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