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International Journal of Energy for a Clean Environment

Publicou 8 edições por ano

ISSN Imprimir: 2150-3621

ISSN On-line: 2150-363X

SJR: 0.597 SNIP: 1.456 CiteScore™:: 3.7 H-Index: 18

Indexed in

NUMERICAL STUDY OF PERFORATED INDIRECT EVAPORATIVE AIR COOLER

Volume 12, Edição 2-4, 2011, pp. 239-250
DOI: 10.1615/InterJEnerCleanEnv.2013006668
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RESUMO

This report investigates a mathematical simulation of heat and mass transfer in a perforated regenerative heat exchanger designed using the Maisotsenko cycle. A one-dimensional heat and mass transfer model is developed to perform thermal calculations of the indirect evaporative cooling process, thus quantifying overall heat exchanger performance. This mathematical model accounts for many unique features of the perforated regenerative exchanger, enabling an accurate prediction of performance.

CITADO POR
  1. Anisimov Sergey, Pandelidis Demis, Numerical study of the Maisotsenko cycle heat and mass exchanger, International Journal of Heat and Mass Transfer, 75, 2014. Crossref

  2. Anisimov Sergey, Pandelidis Demis, Jedlikowski Andrzej, Polushkin Vitaliy, Performance investigation of a M (Maisotsenko)-cycle cross-flow heat exchanger used for indirect evaporative cooling, Energy, 76, 2014. Crossref

  3. Anisimov Sergey, Pandelidis Demis, Danielewicz Jan, Numerical analysis of selected evaporative exchangers with the Maisotsenko cycle, Energy Conversion and Management, 88, 2014. Crossref

  4. Pandelidis Demis, Anisimov Sergey, Worek William M., Performance study of the Maisotsenko Cycle heat exchangers in different air-conditioning applications, International Journal of Heat and Mass Transfer, 81, 2015. Crossref

  5. Bolotin Sergey, Vager Borys, Vasilijev Vladimir, Comparative analysis of the cross-flow indirect evaporative air coolers, International Journal of Heat and Mass Transfer, 88, 2015. Crossref

  6. Pandelidis Demis, Anisimov Sergey, Worek William M., Comparison study of the counter-flow regenerative evaporative heat exchangers with numerical methods, Applied Thermal Engineering, 84, 2015. Crossref

  7. Anisimov Sergey, Pandelidis Demis, Maisotsenko Valeriy, Numerical Study of Heat and Mass Transfer Process in the Maisotsenko Cycle for Indirect Evaporative Air Cooling, Heat Transfer Engineering, 37, 17, 2016. Crossref

  8. Pandelidis Demis, Cichoń Aleksandra, Pacak Anna, Anisimov Sergey, Drąg Paweł, Application of the cross-flow Maisotsenko cycle heat and mass exchanger to the moderate climate in different configurations in air-conditioning systems, International Journal of Heat and Mass Transfer, 122, 2018. Crossref

  9. Pandelidis Demis, Pacak Anna, Cichoń Aleksandra, Anisimov Sergey, Drąg Paweł, Vager Borys, Vasilijev Vladimir, Multi-stage desiccant cooling system for moderate climate, Energy Conversion and Management, 177, 2018. Crossref

  10. Pandelidis Demis, Cichoń Aleksandra, Pacak Anna, Anisimov Sergey, Drąg Paweł, Counter-flow indirect evaporative cooler for heat recovery in the temperate climate, Energy, 165, 2018. Crossref

  11. Pandelidis Demis, Cichoń Aleksandra, Pacak Anna, Anisimov Sergey, Drąg Paweł, Performance comparison between counter- and cross-flow indirect evaporative coolers for heat recovery in air conditioning systems in the presence of condensation in the product air channels, International Journal of Heat and Mass Transfer, 130, 2019. Crossref

  12. Pacak Anna, Jedlikowski Andrzej, Karpuk Michał, Anisimov Sergey, Analysis of power demand calculation for freeze prevention methods of counter-flow heat exchangers used in energy recovery from exhaust air, International Journal of Heat and Mass Transfer, 133, 2019. Crossref

  13. Pandelidis Demis, Cichoń Aleksandra, Pacak Anna, Drąg Paweł, Drąg Marlena, Worek William, Cetin Sabri, Performance study of the cross-flow Maisotsenko cycle in humid climate conditions, International Communications in Heat and Mass Transfer, 115, 2020. Crossref

  14. Aleem Muhammad, Hussain Ghulam, Sultan Muhammad, Miyazaki Takahiko, Mahmood Muhammad H., Sabir Muhammad I., Nasir Abdul, Shabir Faizan, Khan Zahid M., Experimental Investigation of Desiccant Dehumidification Cooling System for Climatic Conditions of Multan (Pakistan), Energies, 13, 21, 2020. Crossref

  15. Gorbachev M, Terekhov V, A comparative analysis of schemes of indirect evaporation type apparatuses, Journal of Physics: Conference Series, 2057, 1, 2021. Crossref

  16. Gorbachev M, Terekhov V, Numerical modelling of a two-channel heat and mass exchanger, Journal of Physics: Conference Series, 1382, 1, 2019. Crossref

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