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International Journal of Photoenergy
Volume 2015, Article ID 151874, 7 pages
Research Article

Sensitive Analysis for the Efficiency of a Parabolic Trough Solar Collector Based on Orthogonal Experiment

1School of Civil Engineering, Northeast Petroleum University, Daqing 163318, China
2The Higher Educational Key Laboratory for Disaster Prevention, Mitigation and Protection Engineering of Heilongjiang Province, Northeast Petroleum University, Daqing 163318, China
3Installation Company, Daqing Oilfield Construction Company Ltd., Daqing 163300, China

Received 10 July 2015; Accepted 24 August 2015

Academic Editor: Xudong Zhao

Copyright © 2015 Xiaoyan Liu et al. This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.

Citations to this Article [4 citations]

The following is the list of published articles that have cited the current article.

  • Ahmed F. Mashaly, and A.A. Alazba, “Thermal performance analysis of an inclined passive solar still using agricultural drainage water and artificial neural network in arid climate,” Solar Energy, vol. 153, pp. 383–395, 2017. View at Publisher · View at Google Scholar
  • Wajahat Ali, Zubair Usman, and Umer Jamil, “Uncertainty and sensitivity analysis for performance of Solar Invictus 53S - A parabolic dish solar collector for direct steam generation,” AIP Conference Proceedings, vol. 1850, 2017. View at Publisher · View at Google Scholar
  • Ankur Geete, and Rajat Sharma, “Experimental analyses on parabolic solar collector at various operating conditions,” Universal Journal of Mechanical Engineering, vol. 5, no. 2, pp. 25–34, 2017. View at Publisher · View at Google Scholar
  • Mohammed Halimi, Imane Outana, Aumeur El Amrani, Choukri Messaoudi, and Jaouad Diouri, “Experimental investigation of absorbed flux circumferential distribution of an absorber with U-pipe tube exchanger for Parabolic Trough Collectors,” Applied Thermal Engineering, vol. 129, pp. 1230–1239, 2018. View at Publisher · View at Google Scholar