361
Views
3
CrossRef citations to date
0
Altmetric
Original Articles

Experimental study of silica gel/water adsorption cooling system using a modified adsorption bed

, , &
Pages 41-49 | Received 07 Nov 2014, Accepted 28 May 2015, Published online: 07 Oct 2015

References

  • Alghoul, M.A, M.Y. Sulaiman, B.Z. Azmi, and M.Abd. Wahab. 2007. Advances on multi-ourpose solar adsorption systems for demostic refrigeration and water heating. Applied Thermal Engineering 27:813–22.
  • Askalany, A.A., M. Salem, I.M. Ismail, A. Hamza, and M.G. Morsy. 2012. A review on adsorption cooling systems with adsorbent carbon. Renewable and Sustainable Energy Reviews 16:493–500.
  • Boelman, E.C., B.B. Saha, and T. Kashiwagi. 1995. Experimental investigation of a silica gel–water adsorption refrigeration cycle—the influence of operating conditions on cooling output and COP. ASHRAE Trans 101(2):358–66.
  • Chang, W.S., C.C. Wang, and C.C. Shieh. 2007. Experimental study of a solid adsorption cooling system using flat-tube heat exchangers as adsorption bed. Applied Thermal Engineering 27:2195–9.
  • Chen, C.J., R.Z. Wang, Z.Z. Xia, J.K. Kiplagat, and Z.S. Lu. 2010. Study on a compact silica gel–water adsoption chiller without vacuum valves: Design and experimental study. Applied Energy 87:2673–81.
  • Kasidid, A. 2009. Development of a microchannel device for adsorption cooling application. M.Sc. Thesis, Oregon State University, Corvallis, OR.
  • Louajari, M., A. Mimet, and A. Ouammi. 2011. Study of the effect of finned tube adsorber on the performance of solar driven adsorption cooling machine using activated carbon-ammonia pair. Applied Energy 88:690–8.
  • Mitsuhiro, K., U. Takeshi, F. Ryo, K. Jun, W. Fujio, K. Noriyuki, and H. Masanobu. 2008. Cooling output performance of a prototype adsorption heat pump with fin-type silica gel tube module. Applied Thermal Engineering 28:87–93.
  • Parsons, B., A.A. Pesaran, D. Bharathan, and B. Sheipuk. 1987. Evaluation of thermally activated heat pump/desiccant air conditioning systems and componenets. SERI/TR, 252-3116, UC Category: 62. Golden, CO: Solar Energy Research Institute.
  • Wang, D.C., J.Y. Wu, Z.Z. Xia, H. Zhai, R.Z. Wang, and W.D. Doub. 2005a. Study of a novel silica gel–water adsorption chiller Part I: Design and performance prediction. International Journal of Refrigeration 28:1073–83.
  • Wang, D.C., J.Y. Wu, Z.Z. Xia, H. Zhai, R.Z. Wang, and W.D. Doub. 2005b. Study of a novel silica gel–water adsorption chiller Part II: Experimental study. International Journal of Refrigeration 28:1084–91.
  • Wang, R.Z., and R.G. Oliveira. 2006. Adsorption refrigeration—an efficient way to make good use of waste heat and solar energy. Progress in Energy and Combustion Science 32:424–58.
  • Yanlin, L. 2003. Simulation of a 4-bed silica gel–water adsorption chiller. M.Sc. Thesis, National University of Singapore, Singapore.
  • Yong, L., and R.Z. Wang. 2007. Adsorption refrigeration: A survey of novel technologies. Recent Patents on Engineering 1:1–21.
  • Yongling, Z. 2011. Study of activated carbon/methanol adsorption refrigeration tube and system integration. M.Sc. Thesis, University of Adelaide, Australia, January.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.