最適用水網路之設計
碩士 === 國立成功大學 === 化學工程研究所 === 85 === The objective of this research is to develop a systematic method for water-using network (WUN) design. Ideally, this method can be adopted as a design tool for improving chemical processes in terms of both cost and waste reduction. The design of WUNs is trad...
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ndltd-TW-085NCKU30630612015-10-13T12:18:06Z http://ndltd.ncl.edu.tw/handle/76103955604905662972 最適用水網路之設計 黃盈堯 碩士 國立成功大學 化學工程研究所 85 The objective of this research is to develop a systematic method for water-using network (WUN) design. Ideally, this method can be adopted as a design tool for improving chemical processes in terms of both cost and waste reduction. The design of WUNs is traditionally carried out with the aid of Pinch technology. Specifically, the minimum process water consumption rate or wastewater treatment rate is first determined according to the composite curves and the network structure is then obtained manually based on experience. In this work, the minimum process water consumption rate or wastewater treatment rate is determined directly with a mathematical programming model instead. The optimal network structure is also included in its solution. This approach is therefore evidently more efficient and more reliable. In addition, lower-cost WUNs can sometimes be identified with the proposed techniques. We have also tried to develop models for integrating process water network and wastewater treatment network in the same plant. The results are quite encouraging, i.e. the freshwater demand can be further reduced to a very low level. Finally, the above methods have actually been applied to a petrochemical plant located in southern Taiwan. The preliminary results are impressive. In particular, a significant saving of 52% in water consumption has been identified. 張玨庭 1997 學位論文 ; thesis 172 zh-TW |
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碩士 === 國立成功大學 === 化學工程研究所 === 85 === The objective of this research is to develop a systematic method for water-using network (WUN) design. Ideally, this method can be adopted as a design tool for improving chemical processes in terms of both cost and waste reduction.
The design of WUNs is traditionally carried out with the aid of Pinch technology. Specifically, the minimum process water consumption rate or wastewater treatment rate is first determined according to the composite curves and the network structure is then obtained manually based on experience.
In this work, the minimum process water consumption rate or wastewater treatment rate is determined directly with a mathematical programming model instead. The optimal network structure is also included in its solution. This approach is therefore evidently more efficient and more reliable. In addition, lower-cost WUNs can sometimes be identified with the proposed techniques. We have also tried to develop models for integrating process water network and wastewater treatment network in the same plant. The results are quite encouraging, i.e. the freshwater demand can be further reduced to a very low level.
Finally, the above methods have actually been applied to a petrochemical plant located in southern Taiwan. The preliminary results are impressive. In particular, a significant saving of 52% in water consumption has been identified.
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author2 |
張玨庭 |
author_facet |
張玨庭 黃盈堯 |
author |
黃盈堯 |
spellingShingle |
黃盈堯 最適用水網路之設計 |
author_sort |
黃盈堯 |
title |
最適用水網路之設計 |
title_short |
最適用水網路之設計 |
title_full |
最適用水網路之設計 |
title_fullStr |
最適用水網路之設計 |
title_full_unstemmed |
最適用水網路之設計 |
title_sort |
最適用水網路之設計 |
publishDate |
1997 |
url |
http://ndltd.ncl.edu.tw/handle/76103955604905662972 |
work_keys_str_mv |
AT huángyíngyáo zuìshìyòngshuǐwǎnglùzhīshèjì |
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1716857264535502848 |