Transient Simulation of a Flat Plate Solar Powered Adsorption Refrigeration System

Cilt: 2 Sayı: 4 1 Aralık 2012
  • Rekiyat Bgirl Omohu Suleiman
  • Rekiyat Suleiman
  • Clement Folayan
  • Fatai Anafi
  • Dangana Kulla
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Transient Simulation of a Flat Plate Solar Powered Adsorption Refrigeration System

Abstract

The modeling and simulation of a solar powered adsorption refrigeration system using flat plate solar collector, with activated carbon/methanol as the adsorbent/adsorbate pair has been undertaken in this study.A study of the adsorption bed was carried out to determine the effects of generation, evaporation and condensation temperatures on the performance of the cooling system. This was then used in the optimization of the solar thermal system in the sizing of the collector area and hot water storage tank. A transient simulation of the cooling system with an evaporator temperature of 0oC and condenser temperature of 25oC was subsequently carried out with the TRNSYS 16 software over a period of a typical year.The Flat plate collector system gave average values of refrigeration effect of 4814.83 kJ, solar coefficient of performance (COPs) of 0.024, a cooling coefficient of performance (COP) of 0.608 and a heating efficiency of 0.46. The system was able to achieve a cold room temperature of about 1oC.

Keywords

Kaynakça

  1. E.U. Onochie, “Design and construction of a 100% solar powered vapor absorption refrigerator”. National Solar Energy Forum. 22-25th April 1987, Akoka, Lagos.
  2. P. Erhard, K. Spindler and P. Ehahne, “Test and simulation of a solar powered solid sorption cooling machine”. International Journal of Refrigeration, 21(2): 141. 1998
  3. G.A. Florides, S.A Kalogirou, S.A. Tassou and L.C. Wrobel, “Modeling and Simulation of an absorption solar cooling system for Cyprus”. Solar Energy, 72: 43-51. A.J. Bula, L.F. Navarro, D.L. Herrera and L.A. Corredor, “Thermodynamic simulation of a Solar Absorption Refrigeration System Generator - Heat Exchanger”. iies.faces.ula.ve/AMSE _Bula.pdf /papers/simulation/MSN V. Mittal, K.S. Kasana and N.S. Thakur, “Modeling and Simulation of a Solar Absorption cooling system for India”. Journal of Energy in Southern Africa, 17(3). 2006
  4. O.C. Iloeje, “Design, construction and test run of a solar powered solid absorption refrigerator”. National Annual Solar Energy Forum (NASEF), April 1983, Bida. Niger State, Nigeria.
  5. S.O. Enibe and O.C. Ileoje, “Design optimization of the flat plate collector for a solid adsorption solar refrigerator”. Solar Energy, 60(2): 77-87. 1997
  6. E.E. Anyanwu and C.I. Ezekwe, “Design, Construction and test run of solid adsorption solar refrigerator using activated carbon/methanol as adsorbent/adsorbate pair”. Energy Conversion and Management, 44(18): 2879-2892.
  7. E.E. Anyanwu and N.V. Ogueke, “Thermodynamic design procedure for solid adsorption solar refrigerator”. Renewable Energy, 30(1): 81-96. 2005
  8. A. Boubakri, M. Arsalene, B. Yous, L. Ali-Moussa, M. Pons, F. Meunier and J.J. Guillemiot, “Experimental study of adsorptive solar-powered ice-makers in Agadir (Morocco)-2. Influences of Meteorological parameters”. Renewable Energy, 2(1): 15-21. 1992

Ayrıntılar

Birincil Dil

İngilizce

Konular

-

Bölüm

-

Yazarlar

Rekiyat Bgirl Omohu Suleiman Bu kişi benim

Rekiyat Suleiman Bu kişi benim

Clement Folayan Bu kişi benim

Fatai Anafi Bu kişi benim

Dangana Kulla Bu kişi benim

Yayımlanma Tarihi

1 Aralık 2012

Gönderilme Tarihi

3 Şubat 2016

Kabul Tarihi

-

Yayımlandığı Sayı

Yıl 2012 Cilt: 2 Sayı: 4

Kaynak Göster

APA
Suleiman, R. B. O., Suleiman, R., Folayan, C., Anafi, F., & Kulla, D. (2012). Transient Simulation of a Flat Plate Solar Powered Adsorption Refrigeration System. International Journal Of Renewable Energy Research, 2(4), 657-664. https://izlik.org/JA48GU23ZK
AMA
1.Suleiman RBO, Suleiman R, Folayan C, Anafi F, Kulla D. Transient Simulation of a Flat Plate Solar Powered Adsorption Refrigeration System. International Journal Of Renewable Energy Research. 2012;2(4):657-664. https://izlik.org/JA48GU23ZK
Chicago
Suleiman, Rekiyat Bgirl Omohu, Rekiyat Suleiman, Clement Folayan, Fatai Anafi, ve Dangana Kulla. 2012. “Transient Simulation of a Flat Plate Solar Powered Adsorption Refrigeration System”. International Journal Of Renewable Energy Research 2 (4): 657-64. https://izlik.org/JA48GU23ZK.
EndNote
Suleiman RBO, Suleiman R, Folayan C, Anafi F, Kulla D (01 Aralık 2012) Transient Simulation of a Flat Plate Solar Powered Adsorption Refrigeration System. International Journal Of Renewable Energy Research 2 4 657–664.
IEEE
[1]R. B. O. Suleiman, R. Suleiman, C. Folayan, F. Anafi, ve D. Kulla, “Transient Simulation of a Flat Plate Solar Powered Adsorption Refrigeration System”, International Journal Of Renewable Energy Research, c. 2, sy 4, ss. 657–664, Ara. 2012, [çevrimiçi]. Erişim adresi: https://izlik.org/JA48GU23ZK
ISNAD
Suleiman, Rekiyat Bgirl Omohu - Suleiman, Rekiyat - Folayan, Clement - Anafi, Fatai - Kulla, Dangana. “Transient Simulation of a Flat Plate Solar Powered Adsorption Refrigeration System”. International Journal Of Renewable Energy Research 2/4 (01 Aralık 2012): 657-664. https://izlik.org/JA48GU23ZK.
JAMA
1.Suleiman RBO, Suleiman R, Folayan C, Anafi F, Kulla D. Transient Simulation of a Flat Plate Solar Powered Adsorption Refrigeration System. International Journal Of Renewable Energy Research. 2012;2:657–664.
MLA
Suleiman, Rekiyat Bgirl Omohu, vd. “Transient Simulation of a Flat Plate Solar Powered Adsorption Refrigeration System”. International Journal Of Renewable Energy Research, c. 2, sy 4, Aralık 2012, ss. 657-64, https://izlik.org/JA48GU23ZK.
Vancouver
1.Rekiyat Bgirl Omohu Suleiman, Rekiyat Suleiman, Clement Folayan, Fatai Anafi, Dangana Kulla. Transient Simulation of a Flat Plate Solar Powered Adsorption Refrigeration System. International Journal Of Renewable Energy Research [Internet]. 01 Aralık 2012;2(4):657-64. Erişim adresi: https://izlik.org/JA48GU23ZK