LAUSR.org creates dashboard-style pages of related content for over 1.5 million academic articles. Sign Up to like articles & get recommendations!

Experimental and simulated study on a novel compressed air drying system using a liquid desiccant cycle

Photo by mattpalmer from unsplash

Abstract A new method using liquid desiccant in compressed air drying was put forward in our previous work. However, only the test bench of the pressurized dehumidifier was established and… Click to show full abstract

Abstract A new method using liquid desiccant in compressed air drying was put forward in our previous work. However, only the test bench of the pressurized dehumidifier was established and analyzed. And the regenerator was not established, so the proposed system was not complete. Thus, the system performance of the complete system is unknown. In this paper, the experimental bench and steady-state mathematical model of the complete system are established to investigate the system performance. The dew point of compressed air is −2.4 °C (0.8 MPa) in experiments, indicating dryness could meet needs of various industries which use cooling dehumidification. Besides, the average regeneration temperature is 72.9 °C in experiments, indicating using waste heat from the air compressor to drive solution regeneration is feasible. Moreover, effect of different key parameters, including solution flow rate, solution temperature and ambient conditions on system performance is analyzed by mathematical model. It can be concluded that relative higher solution flow rate, lower inlet solution temperature of dehumidifier and higher inlet solution temperature of regenerator can get a lower humidity ratio. The selected regeneration temperatures in different ambient conditions are 70 °C (summer), 39 °C (winter), 60 °C (transitional season) respectively, which can be used as a reference for the actual operation.

Keywords: system; air; solution; liquid desiccant; compressed air; using liquid

Journal Title: Energy
Year Published: 2018

Link to full text (if available)


Share on Social Media:                               Sign Up to like & get
recommendations!

Related content

More Information              News              Social Media              Video              Recommended



                Click one of the above tabs to view related content.