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- W2184607252 abstract "This paper aims to understand the effect of a turbidity flow intrusion on the eutrophication in Daecheong Dam Reservoir. CE-QUAL-W2, two-dimensional hydrodynamic and water quality model, is applied. The elevation of the reservoir water surface is used to validate the hydrodynamic model parameters and maximum fluctuations in water surface elevations reache about 1 m in the reservoir. Stratification is well reproduced with the correct predictions of the depths in terms of not only the thermo cline but also turbidity cline. Although complete mixing dominates in cold winter season, from May to June, the thickness of the thermo cline becomes the maximum state and transient layer reaches to about 40 m below the surface. By entering into the heavy storm season, July, the thermo cline submerged in deeper lower than 30 m below and the thickness of it is also reduced down to 10 to 15 m. While average TSS in June, an entrance of monsoon is still low but it reaches to peak in July with heavy rainfall. Vertical profiles of TSS regime in July indicates higher concentration in upper water layers and then the regime moves gradually downward in accordance with lapse of time. By the dam spillway opening, high concentration of TSS attributed to storm turbidity ascends to the upper water layer by following the upward current movement and then, the regime precipitates to the layer below 30 to 40 m after September. Model validation for water quality constituents shows good consistency with observed data for last 5 years. The effect of passive operation of discharge gates on the dynamics of TP spatially as well as temporally in the reservoir is also well depicted by model. In spite of comparatively small rainfall accompanied with low concentration of TP, high concentration of TP for entire depth in June appears apparently after monsoon period due to taking nonintervention against the turbidity regime in 2005. And then it sustains the higher TP concentration in the water column after monsoon. And the average TP after monsoon season in 2005 is higher than it in 2003 in which active gate control was established and shorten the duration time of the turbidity regime stagnation in the reservoir." @default.
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- W2184607252 date "2008-01-01" @default.
- W2184607252 modified "2023-09-26" @default.
- W2184607252 title "Application of CE-QUAL-W2 Model to Eutrophication Simulation in Daecheong Reservoir Stratified by Turbidity Storms" @default.
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