2022
DOI: 10.3389/fenvs.2021.770187
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Improved Model for Predicting Total Dissolved Gas Generation With the Residence Time of the Water in the Stilling Phase

Abstract: Quantitative predictions of total dissolved gas (TDG) super-saturation are essential for developing operation schemes for high dams. Most TDG generation prediction models have various shortcomings that affect the accuracy of TDG super-saturation estimation, such as oversimplification of influencing factors and uncertainty in parameter values. In this study, the TDG generation process was divided into three parts, gas-liquid mass transfer process in the stilling phase, dilution resulting from the water jet plun… Show more

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Cited by 2 publications
(2 citation statements)
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References 26 publications
(23 reference statements)
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“…Xue et al, 2018). The degree of TDG supersaturation in the stilling pool is positively correlated to the bubble retention time (Lu et al, 2019;Y. Peng, Lin, et al, 2022).…”
Section: Dissolved Gas Supersaturationmentioning
confidence: 99%
See 1 more Smart Citation
“…Xue et al, 2018). The degree of TDG supersaturation in the stilling pool is positively correlated to the bubble retention time (Lu et al, 2019;Y. Peng, Lin, et al, 2022).…”
Section: Dissolved Gas Supersaturationmentioning
confidence: 99%
“…Due to high water pressure in the pool, the air carried by the water jet dissolves rapidly, forming TDG supersaturation in the water (Pulg et al., 2016; H. Xue et al., 2018). The degree of TDG supersaturation in the stilling pool is positively correlated to the bubble retention time (Lu et al., 2019; Y. Peng, Lin, et al., 2022). The initial saturation of high dam release has little impact on the generation of TDG supersaturation in the stilling pool, as the water jet is largely saturated after undergoing the process of full gas mixing during the downward discharge (S. Xue et al., 2019).…”
Section: River Damming Impacts On Fish Physical Habitatmentioning
confidence: 99%