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个人信息Personal Information
教授
博士生导师
硕士生导师
任职 : 精细化工全国重点实验室主任,教育部智能材料化工前沿科学中心执行主任,大连理工大学膜科学与技术研究开发中心主任
性别:女
毕业院校:中国科学院大连化物所
学位:博士
所在单位:化工学院
学科:化学工程. 膜科学与技术. 生物医学工程
联系方式:hgaohong@dlut.edu.cn
电子邮箱:hgaohong@dlut.edu.cn
考虑换热器详细设计的换热网络综合的研究进展
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发表时间:2015-01-01
发表刊物:计算机与应用化学
期号:4
页面范围:435-438
ISSN号:1001-4160
摘要:With the increasing requirement on the controlling of industrial production cost, a thorough study of heat exchanger network has been obtained great interests for more and more researchers, it is an important aspect in the deep study of heat exchanger network synthesis that considering detailed heat exchanger design, it can reduce the annual total cost of the heat exchanger network by considering detailed heat exchanger design, and it can improve the practical feasibility for the results of the heat exchanger network synthesis. The necessity of considering detailed heat exchanger design was verified with an example which came from a literature, the cost of the heat exchanger network with a detailed heat exchanger design was significantly lower than that without detailed heat exchanger design, and the influence of detailed heat exchanger design on heat exchanger network synthesis was emphasized in this article. Pinch analysis method and mathematical programming method were used for the heat exchanger network synthesis considering detailed heat exchanger design in the literatures, heat exchanger network synthesis with pinch analysis method made the structure of heat exchanger network with detailed heat exchanger design easy to be solved, but it cannot guarantee that it was the global optimal solution. Heat exchanger network synthesis with mathematical programming method was effect to consider the influence of the detailed heat exchanger design on the heat exchanger network synthesis, but it made the mathematical model more complex by considering detailed heat exchanger design, it was compared and reviewed in this article. The future research development was pointed out to have a deep study in detailed heat exchanger network synthesis and get a global optimal solution with a fast and efficient algorithm.
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