Wind speed effect on the flow field and heat transfer around a parabolic trough solar collector

被引:25
作者
Hachicha, A. A. [1 ]
Rodriguez, I. [1 ]
Oliva, A. [1 ]
机构
[1] Univ Politecn Catalunya BarcelonaTech UPC, Heat & Mass Transfer Technol Ctr CTTC, ETSEIAT, Barcelona 08222, Spain
关键词
Parabolic trough solar collector; Wind speed effect; Large Eddy Simulations; Heat transfer coefficient; PTC stability; NUMERICAL-SIMULATION; CIRCULAR-CYLINDER; VELOCITY; RANS; LES;
D O I
10.1016/j.apenergy.2014.05.037
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
Parabolic trough solar collectors are currently one of the most mature and prominent solar technology for the production of electricity. These systems are usually located in an open terrain where strong winds may be found, and could affect their stability and optical performance, as well as the heat exchange between the solar receiver and the ambient air. In this context, a wind flow analysis around a parabolic trough solar collector under real working conditions is performed. A numerical aerodynamic and heat transfer study based on Large Eddy Simulations is carried out to characterise the wind loads and heat transfer coefficients. After the study carried out by the authors in an earlier work (Hachicha et al. 2013) at Re-W1 = 3.9 x 10(5), computations are performed at a higher Reynolds number of Re-W2 = 1 x 10(6), and for various pitch angles. The effects of wind speed and pitch angle on the averaged and instantaneous flow are assessed. The aerodynamic coefficients are calculated around the solar collector and validated with measurements performed in wind tunnel tests. The variation of the heat transfer coefficient around the heat collector element with the Reynolds number is presented and compared to the circular cylinder in cross-flow. The unsteady flow is studied for three pitch angles: theta = 0 degrees, theta = 45 degrees and theta = 90 degrees and different structures and recirculation regions are identified. A spectral analysis around the parabola and its receiver is also carried out in order to detect the most relevant frequencies related to the vortex shedding mechanism which affects the stability of the collector. (C) 2014 Elsevier Ltd. All rights reserved.
引用
收藏
页码:200 / 211
页数:12
相关论文
共 29 条
  • [1] [Anonymous], 2002, P 11 INT S CONC SOL
  • [2] Breuer M, 1998, INT J NUMER METH FL, V28, P1281, DOI 10.1002/(SICI)1097-0363(19981215)28:9<1281::AID-FLD759>3.0.CO
  • [3] 2-#
  • [4] A new Strouhal-Reynolds-number relationship for the circular cylinder in the range 47&lt;Re&lt;2x105
    Fey, U
    Konig, M
    Eckelmann, H
    [J]. PHYSICS OF FLUIDS, 1998, 10 (07) : 1547 - 1549
  • [5] WAKES OF CYLINDRICAL BLUFF BODIES AT LOW REYNOLDS-NUMBER
    GERRARD, JH
    [J]. PHILOSOPHICAL TRANSACTIONS OF THE ROYAL SOCIETY A-MATHEMATICAL PHYSICAL AND ENGINEERING SCIENCES, 1978, 288 (1354): : 351 - +
  • [6] Heat transfer analysis and numerical simulation of a parabolic trough solar collector
    Hachicha, A. A.
    Rodriguez, I.
    Capdevila, R.
    Oliva, A.
    [J]. APPLIED ENERGY, 2013, 111 : 581 - 592
  • [7] Numerical simulation of wind flow around a parabolic trough solar collector
    Hachicha, A. A.
    Rodriguez, I.
    Castro, J.
    Oliva, A.
    [J]. APPLIED ENERGY, 2013, 107 : 426 - 437
  • [8] Hosoya N., 2008, Subcontract Report No. NREL/SR-55032282
  • [9] Hughes T. J. R., 2000, Computing and Visualization in Science, V3, P47, DOI 10.1007/s007910050051
  • [10] Asymmetric vortex shedding flow past an inclined flat plate at high incidence
    Lam, KM
    Leung, MYH
    [J]. EUROPEAN JOURNAL OF MECHANICS B-FLUIDS, 2005, 24 (01) : 33 - 48