Effect of Pure and Binary Azeotropic Fluids on Heat Pipes Performance

Publish Year: 1399
نوع سند: مقاله ژورنالی
زبان: English
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JR_AJCS-3-4_006

تاریخ نمایه سازی: 26 خرداد 1399

Abstract:

Azeotropic fluids are considered to be a beneficial discovery used in various operations involving mechanical performance of machines. It is the thermodynamic property of the fluids to absorb heat and dissipate it. For instance, the addition of alcohols in water may increase the performance of these fluids. The objective of this work was to conduct a comparative study on heat pipe performance with different working fluids. The working fluids chosen for the study were water and pure ethanol. The concentrations of ethanol in water differed between 25% and 95%. The material of heat pipes was copper with a sintered wicks structure. The experimental results revealed that, the evaporator temperature for water was lower than that of the ethanol and its mixture at high heating input. However, the heat transported by the heat pipes of water was considerably greater than that of the heat pipes of ethanol and binary fluids as working fluids.

Authors

Khalifa Bogarrasa

Department of Mechanical Engineering, Faculty of Technical Sciences, Sebha, Libya

Moussa Khlifa

Department of Chemistry, Faculty of Science, University of Sebha, Sebha, Libya

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  • A.A. Ahmed, P. Wang, G. Huang and C. Li, Int. ...
  • M.M. Rathore, R. Kapuno, Engineering heat transfer, Jones and Bartlett ...
  • P. Nemec, A. Cajar, M. Malcho, Global J. Technol. Optimizat., ...
  • M. Groll, M. Schneider, V. Sartre, M.C. Zaghdoudi, M. Lallemand, ...
  • D. Reay, P. Kew, Heat pipes, Butterworth-Heinemann: UK, 2006. ...
  • K.C. Leong, C.Y. Liu, G.Q. Lu, J. Porous Mater., 1997, ...
  • T. Semenic, Y.Y. Lin, I. Catton, D.B. Sarraf, Appl. Therm. ...
  • G. Hwang, M. Kaviany, W. Anderson, J. Zuo, Int. J. ...
  • M. Mwaba, X. Huang, J. Gu, Int. J. Energy Res., ...
  • A. Engelhard, Issues in screen mesh heat pipe manufacturing and ...
  • J.G. Speight, N.A. Lange, Lange s handbook of chemistry, McGraw-Hill: ...
  • D.R. Lide, CRC handbook of chemistry and physics, CRC Press/Taylor ...
  • M. Kutz, Mechanical engineers handbook, Wiley: New Jersey, 2006. ...
  • H. Smirnov, Transport phenomena in capillary-porous structures and heat pipes, ...
  • A. Bejan, A. Kraus, Heat transfer handbook. Wiley: New Jersey, ...
  • M. Kuramae, Heat transfer characteristics of water heat pipe in ...
  • G.M. Kontogeorgis, I.V. Yakoumis, H. Meijer, E. Hendriks, T. Moorwood, ...
  • A. Chapoy, B. Tohidi, Hooman Haghighi, J. Chem.Therm., 2008, 40, ...
  • I. Mellan, Industrial Solvents Handbook, Noyes Publishing: New Jersey, 1977. ...
  • D.J. Goss, R.H. Petrucci, General Chemistry Principles & Modern Applications, ...
  • K. Bogarrasa, M. Khlifa, J. Pure. Appl. Sci., 2017, 16, ...
  • P. Nemec, Testing Thermal Properties of the Cooling Device with ...
  • Pramod R. Pachghare, Ashish M. Mahalle, Procedia Eng., 2013, 51, ...
  • نمایش کامل مراجع