z-logo
Premium
Performance of single‐ and double‐effect operable mechanical vapor recompression desalination system adaptable to variable wind energy
Author(s) -
Kim Yeongmin,
Kim Dongkook,
Amano Yoshiharu,
Ng Kim Choon,
Chun Wongee
Publication year - 2019
Publication title -
international journal of energy research
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.808
H-Index - 95
eISSN - 1099-114X
pISSN - 0363-907X
DOI - 10.1002/er.4594
Subject(s) - evaporator , desalination , renewable energy , heat exchanger , environmental science , wind power , automotive engineering , engineering , work (physics) , process engineering , mechanical engineering , nuclear engineering , electrical engineering , chemistry , biochemistry , membrane
Summary This paper deals with the development and operation of a mechanical vapor recompression (MVR) desalination system with improved energy efficiency in harnessing wind energy, which is non‐dispatchable. Its design, construction, and operation details are presented in this paper. Especially, the main focus of developing the system was on the operation of the system in conjunction with variable loads of new and renewable power sources, in particular, varying wind power. That is, the present work has been carried out to assess the feasibility of its operation in light of capacity modulation to match the power generated under various wind speeds. Optimal operation modes of the system were studied, in which single‐ and double‐effect operations were analyzed for their improvement in energy efficiency. The compression ratio of the proposed MVR system was 1.55 at an inverter speed of 55 Hz, which agreed well with its design value. Operation of the main heat exchanger remained stable within the limits of its operable range, although the temperature differences in the main heat exchanger did not remain constant because of the pressure variations in the evaporator. The daily freshwater yield was between 28 and 51 tons. The power consumption per ton of freshwater produced was about 43 kW for a single effect and about 23 kW for a double effect, which is about twice as efficient.

This content is not available in your region!

Continue researching here.

Having issues? You can contact us here