文章摘要
张志政, 鄢俊波, 雷 蓓, 田 欢.立体循环一体化氧化沟二维流场模拟分析Journal of Water Resources and Water Engineering[J].,2018,29(1):166-171
立体循环一体化氧化沟二维流场模拟分析
Analysis on 2D numerical simulation for integrated oxidation ditch with vertical circle
  
DOI:10.11705/j.issn.1672-643X.2018.01.28
中文关键词: 立体循环一体化氧化沟  数值模拟  流场特性  结构优化  底部推流器
英文关键词: integrated oxidation ditch with vertical circle  numerical simulation  flow field characteristic  structure optimization  submerged impeller
基金项目:
Author NameAffiliation
ZHANG Zhizheng, YAN Junbo, LEI Bei, TIAN Huan (西安建筑科技大学 环境与市政工程学院 陕西 西安 710055) 
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中文摘要:
      利用FLUENT6.3.26软件,采用RNG k-ε湍流模型对立体循环一体化氧化沟(IODVC)进行二维单相流模拟。探究下沟道底部推流器安装方式对整个流场的影响,并得出推流器最佳安装高度和安装位置。利用多重参考系模型(MRF)模拟表面转刷曝气装置的转动,采用风扇模型模拟底部推流器。结果表明:中央隔板底部是污泥淤积危险区;底部推流器安装在直道处比安装在弯道处有更好的推流效果;最佳安装位置在直段约3/4处。推流器叶片轴心高度与下沟道水深之比(y/h)为0.18时,流速大于0.25 m/s的区域占比最大,反应器循环流动效果最佳。
英文摘要:
      The paper used FLUENT 6.3.26 software and RNG k-ε turbulence model to perform a two-dimensional simulation of single-phase flow in an integrated oxidation ditch with vertical circle (IODVC). The effect of submerged propeller on the flow fields was explored, and the best installation height and site were obtained. Specifically, the moving reference frame model (MRF), fan model were used to simulate the behaviors of the brush aeration, submerged impeller, respectively. The result showed that the bottom of the central baffle was the danger zone of sludge sedimentation, submerged impeller was installed in the straight place had better flow effect than installation on the bend channel, and 3/4 of the straight was the best installation site. The percentage of the flow regime that liquid velocity was greater than 0.25m/s was maximal when the ratio of axes height and depth (y/h) was 0.18, and the reactor could achieve the greatest effect of circulation flow.
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