Maisotsenko Thermodynamic Cycle and Prospects of Its Application in Ukraine
DOI:
https://doi.org/10.15407/visn2013.02.039Keywords:
indirect-evaporating cooling, wet bulb thermometer, dew point temperature, psychrometric chart, gas turbinesAbstract
The review is given in the field of а novel Maisotsenko thermodynamic cycle and its application in various industrial objects of Ukraine. Among those are power gas turbines, conditioners and air coolers, sea water distillators, burners with а high level of moisture in air and some others. It is shown that devices on the Maisotsenko cycle demonstrate high technical and economic parameters which exceed characteristics of other modern devices.
References
Wani C., Ghodke S., Shrivastava C. A review on potential of Maisotsenko cуcle in energy saving applications using evaporative cooling. Int. J. Adv. Res. Sci. Eng. Technol. 2012. 1(1): 15–20.
Galiskan H., Hepbasli A., Dincer I., Maisotsenko V. Thermodynamic performance assessment of a novel air cooling cycle: Maisotsenko cycle. Int. J. Refrig. 2011. 34(4): 980–90. http://doi.org/10.1016/j.ijrefrig.2011.02.001
Gillan L., Maisotsenko V. Maisotsenko open cycle used for gas turbine power generation. Proc. ASME Turbo Expo 2003 (June 16–19, 2003, Atlanta, USA). http://doi.org/10.1115/gt2003-38080
Gillan L. Maisotsenko cycle for cooling processes. Int. J. Energy Clean Env. 2008. 9(1–3): 47–64. http://doi.org/10.1615/InterJEnerCleanEnv.v9.i1-3.50
The Maisotsenko cycle. Conceptual. http://www.idalex.com/.
The Maisotsenko cycle. Basic. http://www.idalex.com/.
Maisotsenko V., Reizin I. The Maisotsenko cycle for electronics cooling . Proc. ASME InterPACK2005 (July 17–22, 2005, San-Francisco, USA). http://doi.org/10.1115/ipack2005-73283
Maisotsenko V., Gillan L., Kozlov A. The Maisotsenko cycle for power generation, waste energy recovery, and water reclamation. Proc. Clean Energy Supercluster Forum (Oct. 25, 2010, Fort Collins, USA).
National Renewable Energy Laboratory. http://www.nrel.gov.
Burger R. Profits аnd cold water. Engineered Systems Magazine. 2000. 17(9): 86.
Product Catalog «Zorya» – «Mashproekt» (Ukraine). 2009.
Soroka B.S. Method for accounting for the effect of composition and parameters of the mixture on the formation of nitrogen oxides in combustion processes. J. Ecol. Technol. Res. 1993. 6: 47–53.