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Impact of revised thermal stability on pollutant transport time in a deep reservoir
Binbin Wu;  Guoqiang Wang;  Hong Jiang;  Jingfu Wang;  Changming Liu
2016
Source PublicationJournal of Hydrology
Volume535Pages:671-687
Abstract

Thermal stability (Schmidt stability) and water age, which are significantly related to water quality and algae bloom in deep reservoirs, are two crucial indicators of stratification strength and pollutant transport time, respectively. Here, the original Schmidt stability, which was derived from a one-dimensional assumption, was theoretically extended to a three-dimensional water body. In addition, a three-dimensional model was verified for the case study of Hongfeng Reservoir in China based on data from 2009 and 2010. Although the revised stability was similar to the original stability of Hongfeng Reservoir, which occurred at a relatively low level, the greater stratification in other deep water bodies would enhance their difference. Air temperature and water depth were the most important factors of the temporal variation in stability and the spatial variation in stability, respectively. The pollutant transport processes in the Hongfeng Reservoir was very complex with alternate appearances of overflow, interflow and underflow, depending on the season. The spatial water age was primarily determined by the morphometry and the inflow/outflow (with the highest water age in North Lake), whereas the vertical difference in the water age among the layers was primarily controlled by thermal stratification. Negative linear relationships between the average stability and the water ages of the bottom layers in three representative sites during summer were observed. Positive linear relationships between the average stability and the water ages of the surface layers were also observed. These findings enable a better understanding of the hydrodynamic and pollutant transport processes in a deep reservoir.

KeywordThermal Stratification revised Schmidt Stability water Age deep Reservoir three-dimensional Model
Indexed BySCI
Language英语
Document Type期刊论文
Identifierhttp://ir.gyig.ac.cn/handle/42920512-1/9622
Collection环境地球化学国家重点实验室
Affiliation1.College of Water Sciences, Beijing Normal University, Beijing 100875, China
2.Nanjing Institute of Environmental Sciences, Ministry of Environment Protection, Nanjing 210042, China
3.State Key Laboratory of Environmental Geochemistry, Institute of Geochemistry, Chinese Academy of Sciences, Guiyang 550002, China
4.Institute of Geographical Sciences and Natural Resources Research, Chinese Academy of Sciences, Beijing 100101, China
Recommended Citation
GB/T 7714
Binbin Wu;Guoqiang Wang;Hong Jiang;Jingfu Wang;Changming Liu. Impact of revised thermal stability on pollutant transport time in a deep reservoir[J]. Journal of Hydrology,2016,535:671-687.
APA Binbin Wu;Guoqiang Wang;Hong Jiang;Jingfu Wang;Changming Liu.(2016).Impact of revised thermal stability on pollutant transport time in a deep reservoir.Journal of Hydrology,535,671-687.
MLA Binbin Wu;Guoqiang Wang;Hong Jiang;Jingfu Wang;Changming Liu."Impact of revised thermal stability on pollutant transport time in a deep reservoir".Journal of Hydrology 535(2016):671-687.
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