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Main positions:中国能源学会理事、国家教育部学科学位评审专家、担任国家教育部研究生学位论文评审专家、全国大学生节能减排竞赛评审专家
Other Post:江苏省、浙江省、江西省科技成果奖评审专家、江苏省省高新技术企业认定评审专家、江苏省科技评估咨询专家、江苏省工程热物理学会常务理事、江苏省科技副总、南京市太阳能学会秘书长等。
Degree:Doctoral Degree in Engineering
School/Department:College of Energy and Power Engineering

韩东

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Education Level:南京航空航天大学

Alma Mater:南京航空航天大学

Paper Publications

Thermo-economic analysis of a water-heated humidification-dehumidification desalination system with waste heat recovery
Date of Publication:2018-03-15 Hits:

Affiliation of Author(s):能源与动力学院
Journal:ENERGY CONVERSION AND MANAGEMENT
Key Words:Humidification dehumidification Waste heat Thermo-economic analysis Gained-output-ratio Unit cost of water production
Abstract:Humidification dehumidification (HDH) processes have been proved to be efficient for producing freshwater from seawater or brackish water. In this paper, an HDH desalination system, in which the seawater is appointed to recover the waste heat, is suggested. Based on the principles of mass and energy conservation, mathematical models for all the contained components as well as the entire desalination system, are built, and then the relevant thermo-economic analysis is also accomplished. The simulation results show that peak values of water production with m(w) = 99.05 kg h(-1) and gained-output-ratio (GOR) with GOR = 1.51 are obtained when the balance condition of the dehumidifier appears at the design conditions, while a bottom value of unit cost of water production (UCWP) is found as UCWP = 37.68$ kg(-1) hat the case of m(da) = 0.14 kg s(-1). Hence, the great advantages at the aspect of cost for unit water production compared to the solar drive type is validated. It is also found that reducing the seawater spraying temperature and elevating the humidification effectiveness are beneficial to raise the relevant thermodynamic and economic performance of the desalination system. With respect to the variation for dehumidification effectiveness, the peak value of GOR rises from GOR = 1.28 at epsilon(d) = 0.8 to GOR = 1.85 at epsilon(d) = 0.9, while a peak value of UCWP is obtained as UCWP = 50.12$ kg(-1) h due to the substantial increase of the heat transfer area for the dehumidifier.
ISSN No.:0196-8904
Translation or Not:no
Date of Publication:2018-03-15
Co-author:He Weifeng,Zhu, W. P.,Ji, C.
Correspondence Author:韩东
Date of Publication:2018-03-15