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Thermodynamic, economic analysis and optimization of a heat pump driven desalination system with open-air humidification dehumidification configurations.

Authors :
He, W.F.
Chen, J.J.
Zhen, M.R.
Han, D.
Source :
Energy. 5/1/2019, Vol. 174, p768-778. 11p.
Publication Year :
2019

Abstract

In this paper, the heat pump is coupled to a humidification dehumidification desalination system, with open-air configurations, to enhance the energy conversion efficiency. After establishing the energetic and entropic equations for all the thermal processes, the correlations between the desalination performance and the critical parameters, including the compression pressure ratio, pinch temperature difference of the condenser, terminal temperature difference of the evaporator, are revealed. Afterwards, the mass flow rate ratio and effectiveness during humidification and dehumidification are treated as the decision variables to optimize the energy conversion efficiency of the heat pump driven desalination system. The simulation results show that the actual top water production and gained-output-ratio of the desalination system reach 88.34 kgh−1 and 3.72 at the balance condition of the humidifier. It is also obtained that raising the compression pressure ratio and reducing the pinch temperature difference of the condenser and terminal temperature difference of the evaporator, can promote the desalination performance. Furthermore, based on the particle swarm optimization algorithm, the best desalination performance, with 151.03 kgh−1 for the water production, and 5.95 for the gained-output-ratio, is optimized within the prescribed range of the decision variables, while the corresponding cost of produced water arrives at 0.015$L−1 through the economic analysis. • An heat pump driven desalination system with open-air humidification dehumidification system is proposed. • Energetic and entropic analysis of the HPDDS is achieved. • Correlations between the critical parameters and the system performance are revealed. • Thermodynamic performance of the HPDDS is optimized based on the PSO algorithm. • Economic performance of the HPDDS is also calculated and presented. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
03605442
Volume :
174
Database :
Academic Search Index
Journal :
Energy
Publication Type :
Academic Journal
Accession number :
136182315
Full Text :
https://doi.org/10.1016/j.energy.2019.03.005