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Tytuł artykułu

Experimental research on the impact of the application of fins on absorber surface on thermal efficiency of passive solar air collector

Wybrane pełne teksty z tego czasopisma
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
In this paper an experimental results on passive solar air collectors are presented. An impact of application of waveform fins on the absorber surface on thermal efficiency was investigated. The results were compared with experiment on passive solar air collector with flat absorber surface. The experiment was conducted under steady state artificial radiation conditions in a laboratory environment. This enabled the acquisition of differences in flow and thermal parameters of the two designs. At the experimental stand following parameters were measured: irradiance, air temperature at inlet and outlet to the collector, mean air velocity at the inlet duct of the collector. The impact of irradiance on temperature increase, volumetric flow rate and thermal efficiency is shown. It was established that thermal efficiency of the collector with expanded absorber surface in form of fins is 10-15% higher than the efficiency of flat absorber collector.
Rocznik
Tom
Strony
32--36
Opis fizyczny
Bibliogr. 19 poz., rys., wykr.
Twórcy
autor
  • Technical University of Koszalin, Department of Heat Enginnering and Refrigeration, Koszalin, Poland
autor
  • Technical University of Koszalin, Department of Heat Enginnering and Refrigeration, Koszalin, Poland
  • Technical University of Koszalin, Department of Heat Enginnering and Refrigeration, Koszalin, Poland
Bibliografia
  • Afriyie J. K., Nazha M. A. A., Rajakaruna H., Forson F. K., 2009, Experimental investigations of a chimney-dependent solar crop dryer, Renew. Energy, 34, 217-222
  • Alvarez G., Arce J., Lira L., Heras L.M.R., 2004, Thermal performance of an air solar col-lector with an absorber plate made of recyclable aluminum cans, Sol. Energy, 77, 107-113
  • Arce J., Jimenez M. J., Guzman J. D., Heras M. R., Alvarez G., Xaman J., 2009, Experimental study for natural ventilation on a solar chimney, Renew. Energy, 34, 2928-2934
  • Benli H. and Durmus A., 2009, Performance analysis of a latent heat storage system with phase change material for new designed solar collectors in greenhouse heating, Sol. Energy, 83, 2109-2119
  • Benli H., 2013, Experimentally derived efficiency and exergy analysis of a new solar air heater having different surface shapes, Renew. Energy, 50, 58-67
  • Bouadila S., Kooli S., Lazaar M., Skouri S., Farhat A., 2013, Performance of a new solar air heater with packed-bed latent storage energy for nocturnal use, Appl. Energy, 110, 267-275
  • Esen H., Ozgen F., Esen M., Sengur A., 2009, Modelling of a new solar air heater through least squares support vector machines, Expert Syst. Appl., 36, 10673-10682
  • Fudholi A., Sopian K., Ruslan M. H., Alghoul M. A., Sulaiman M. Y., 2010, Review of solar dryers for agricultural and marine products, Renew. Sustain. Energy Rev., 14, 1-30
  • Gan G., 2006, Simulation of buoyancy-induced flow in open cavities for natural ventilation, Energy Build., 38,410-420
  • Karim M. A., Hawlader M. N. A., 2004, Development of solar air collectors for drying applications, Energy Convers. Manag., 45, 329-344
  • Karim M. A., Hawlader M. N. A., 2006, Performance evaluation of a v-groove solar air collector for drying applications, Appl. Therm. Eng., 26, 121- 130
  • Lewandowski W. M., 2007: Proecological, renewable energy sources [in Polish], WNT
  • Maneewan S., Khedari J., Zeghmati B., Hirunlabh J., Eakburanawat J., 2003, Experimental investigation on generated power of thermoelectric roof solar collector, Int. Conf. Thermoelectr. ICT, Proc., 574- 577
  • Miyazaki T., Akisawa A., i Kashiwagi T., 2006, The effects of solar chimneys on thermal load mitigation of office buildings under the Japanese climate, Renew. Energy, 31, 987-1010
  • Nematollahi O., Alamdari P., Assari M. R., 2014, Experimental investigation of a dual pur-pose solar heating system, Energy Convers. Manag., 78, 359-366
  • Ozgen F., Esen M., Esen H., 2009, Experimental investigation of thermal performance of a double-flow solar air heater having aluminium cans, Renew. Energy, 34, 2391-2398
  • PN EN ISO 9488. Solar Energy - Vocabulary
  • Toure S., 2001, Characteristic temperatures in a natural convection solar air heater, Energy Convers. Manag., 42, 1157-1168
  • Yusoff W. F. M., Salleh E., Adam N. M., Sapian A. R., Yusof S. M., 2010, Enhancement of stack ventilation in hot and humid climate using a combination of roof solar collector and vertical stack, Build. Environ., 45, 2296-2308
Uwagi
PL
Opracowanie ze środków MNiSW w ramach umowy 812/P-DUN/2016 na działalność upowszechniającą naukę (zadania 2017).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-465a4ac9-c38f-4e8f-b6fc-239eddcc518a
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