Modeling of parabolic collector (a new approach of concentration ratio calculation)

Modeling of parabolic collector (a new approach of concentration ratio calculation)

Modern engineering challenges require the world to use renewable and environmentally friendly energy. One of the most important forms of renewable energy is solar energy. The parabolic collector is a popular collector used to absorb solar energy. In this study, a new approach is used to calculate the radiation concentration ratio in a parabolic collector. The concentration ratio is calculated from the ratio of the reflection beam to the incident beam radiation, and it depends on two main variables: the collector width (W) and the focal length (P). The model is tested and compared to results from previously published work. The comparison showed that the model results can be relied upon for accuracy and are compatible with published results. The results indicate that increasing the width of the collector (W) leads to an increase in the concentration ratio (RC), while the contrary is true when the focal length (P) increased. The collector efficiency minimum values were 19.3%, 21.07 %, 22.35% and 23.33% at concentration ratios of 69, 80, 103 and 148 in line with the focus length values of 0.6m, 0.7m, 0.8m and 0.9m, respectively. The developed model is applied according to the conditions of Basra, Iraq (47.78o longitude and 30.5o latitude).

___

  • The article references can be accessed from the .pdf file.
Journal of Thermal Engineering-Cover
  • Başlangıç: 2015
  • Yayıncı: YILDIZ TEKNİK ÜNİVERSİTESİ
Sayıdaki Diğer Makaleler

Experimental investigation and validation of solar PV cooling for enhanced energy conversion efficiency for Indian climatic conditions

Pritam BHAT, Ananth S. IYENGAR, Abhilash N, Pavan KUMAR REDDY

Numerical investigation of 3D unsteady flow around a rotor of vertical axis wind turbine darrieus type H

Amar BERKACHE, Abdellah BOUMEHANI, Belkhir NOURA, Rabah KERFAH

Numerical investigation of heat transfer & hall effects on MHD nanofluid flow past over an oscillating plate with radiation

S SARALA, E. GEETHA, M. NIRMALA

Energy, economic and environmental analysis and comparison of the novel Oxy- combustion power systems

Ibrahim OZSARI, Yasin UST

An experimental study on resuspension, thermostability and migration phenomenon of nanoparticles in pool boiling

R.praveen BHARATHWAJ, M. B. VARUN PRADEEP, P. PADMANATHAN, A. SATHEESH, N. R. DEVI

Experimental study of heat transfer in a helical coiled tube biomass fired rotary device

Prashant DESHMUKH, Satyajit KASAR, Niteen SAPKAL

Heat transfer enhancement for corrugated facing step channels using aluminium nitride nanofluid - numerical investigation

Kafel AZEEZ, Abd Rahim ABU TALIB, Riyadh IBRAHEEM AHMED3

Thermo-economic feasibility analysis of trilateral-cycle power generators for waste heat recovery-to-power applications

Habeeb A. AJIMOTOKAN, Isiaka AYUBA, Hassan K. IBRAHIM

Modeling of parabolic collector (a new approach of concentration ratio calculation)

Tahseen Ali JABBAR, Raed S. BATBOOTI, Bassam A. MOHAMMED