Affiliation:
1. 1 Civil Engineering College, Guizhou University, Guizhou 550025, China
Abstract
Abstract
Supersaturation of dissolved oxygen (DO) and total dissolved gas (TDG) is generated by high dam discharge, excess oxygen production in photosynthesis and increasing temperature in water, which may directly lead to fish suffering from ‘gas bubble disease’ or death. In this paper, under a series of experimental aeration conditions in standing water, it was concluded that aeration had a positively promoting effect on releases of supersaturated DO and TDG, while aeration aperture and aeration depth had inhibitory effects on them. For single factor analysis, aeration had the greatest effect on the release of DO and TDG, the second effect on DO was that of aeration depth and the smallest effect was that of aeration aperture, but the second effect on TDG was that of aeration aperture and the smallest effect was that of aeration depth. Most importantly, the release coefficient of DO was greater than that of TDG, and a quantitative relationship between the release coefficient of DO and TDG and aeration conditions, respectively, was established. An exponential function relationship of the release coefficients of DO and TDG was also established. The results of the research have important guiding significance and theoretical value for reducing the harm caused by supersaturated DO and TDG.
Subject
Water Science and Technology
Reference34 articles.
1. Principle and applications of microbubble and nanobubble technology for water treatment;Chemosphere,2011
2. Advective diffusion of air bubbles in turbulent water flows;Fluid Mechanics of Environmental Interfaces,2008
3. Analysis of dissolved oxygen variation characteristics and influencing factors downstream of the Three Gorges Dam;Advances in Water Science,2009
4. Effects of total dissolved gas supersaturated water on lethality and catalase activity of Chinese sucker (Myxocyprinus asiaticus Bleeker);Journal of Zhejiang University Science B,2012
5. Field observation and numerical modelling of supersaturated dissolved gas at river confluence;Ecological Modelling,2022
Cited by
2 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献