Analyzes the water quality simulation of Shih-Men reservoir.
碩士 === 國立中央大學 === 土木工程研究所 === 90 === ABSTRACT According to the particular factors of hydrology, geography, and meteorology, building a proper water quality model should consider with the local characteristics and water identity. This study analyzes the water quality simulation of Shih-Men reservoir,...
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ndltd-TW-090NCU050150682015-10-13T12:46:50Z http://ndltd.ncl.edu.tw/handle/31997104094848903030 Analyzes the water quality simulation of Shih-Men reservoir. 石門水庫水質模擬與水理探討 Tai-Ching Yu 余岱璟 碩士 國立中央大學 土木工程研究所 90 ABSTRACT According to the particular factors of hydrology, geography, and meteorology, building a proper water quality model should consider with the local characteristics and water identity. This study analyzes the water quality simulation of Shih-Men reservoir, bases on the CE-QUAL-W2 developed by Waterway Experimental Station, U.S. Army Corps of Engineer. Assuming the volume of reservoir changing with time and taking into account of drift, settling, and disappearance of pollution, the relationship of water temperature and pollution distribution is discussed. One can safely state that, CE-QUAL-W2 can get the trend of water simulation variation. Just only wet period comes, the concentration of water quality in the reservoir get higher. In conclusion, the change of water temperature of reservoir not only affects the change of fluid dynamic but also greatly worsens the water quality. There is only a slight relationship between the change of fluid dynamic and the quantity of water draws off in usual. Nevertheless, the descending temperature and disappearing stratification during the transient between summer and winter leading to severe overturn in reservoir generates sever change of reservoir fluid dynamic. Ray-Shyan Wu 吳瑞賢 2002 學位論文 ; thesis 98 zh-TW |
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碩士 === 國立中央大學 === 土木工程研究所 === 90 === ABSTRACT
According to the particular factors of hydrology, geography, and meteorology, building a proper water quality model should consider with the local characteristics and water identity.
This study analyzes the water quality simulation of Shih-Men reservoir, bases on the CE-QUAL-W2 developed by Waterway Experimental Station, U.S. Army Corps of Engineer. Assuming the volume of reservoir changing with time and taking into account of drift, settling, and disappearance of pollution, the relationship of water temperature and pollution distribution is discussed.
One can safely state that, CE-QUAL-W2 can get the trend of water simulation variation. Just only wet period comes, the concentration of water quality in the reservoir get higher. In conclusion, the change of water temperature of reservoir not only affects the change of fluid dynamic but also greatly worsens the water quality. There is only a slight relationship between the change of fluid dynamic and the quantity of water draws off in usual. Nevertheless, the descending temperature and disappearing stratification during the transient between summer and winter leading to severe overturn in reservoir generates sever change of reservoir fluid dynamic.
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author2 |
Ray-Shyan Wu |
author_facet |
Ray-Shyan Wu Tai-Ching Yu 余岱璟 |
author |
Tai-Ching Yu 余岱璟 |
spellingShingle |
Tai-Ching Yu 余岱璟 Analyzes the water quality simulation of Shih-Men reservoir. |
author_sort |
Tai-Ching Yu |
title |
Analyzes the water quality simulation of Shih-Men reservoir. |
title_short |
Analyzes the water quality simulation of Shih-Men reservoir. |
title_full |
Analyzes the water quality simulation of Shih-Men reservoir. |
title_fullStr |
Analyzes the water quality simulation of Shih-Men reservoir. |
title_full_unstemmed |
Analyzes the water quality simulation of Shih-Men reservoir. |
title_sort |
analyzes the water quality simulation of shih-men reservoir. |
publishDate |
2002 |
url |
http://ndltd.ncl.edu.tw/handle/31997104094848903030 |
work_keys_str_mv |
AT taichingyu analyzesthewaterqualitysimulationofshihmenreservoir AT yúdàijǐng analyzesthewaterqualitysimulationofshihmenreservoir AT taichingyu shíménshuǐkùshuǐzhìmónǐyǔshuǐlǐtàntǎo AT yúdàijǐng shíménshuǐkùshuǐzhìmónǐyǔshuǐlǐtàntǎo |
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