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Influence of circumferential solar heat flux distribution on the heat transfer coefficients of linear Fresnel collector absorber tubes

机译:太阳周向热通量分布对线性菲涅尔集热​​管的传热系数的影响

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摘要

The absorber tubes of solar thermal collectors have enormous influence on the performance of the solar collector systems. In this numerical study, the influence of circumferential uniform and non-uniform solar heat flux distributions on the internal and overall heat transfer coefficients of the absorber tubes of a linear Fresnel solar collector was investigated. A 3D steady-state numerical simulation was implemented based on ANSYS Fluent code version 14. The non-uniform solar heat flux distribution was modelled as a sinusoidal function of the concentrated solar heat flux incident on the circumference of the absorber tube. The k-ε model was employed to simulate the turbulent flow of the heat transfer fluid through the absorber tube. The tube-wall heat conduction and the convective and irradiative heat losses to the surroundings were also considered in the model. The average internal and overall heat transfer coefficients were determined for the sinusoidal circumferential non-uniform heat flux distribution span of 160°, 180°, 200° and 240°, and the 360° span of circumferential uniform heat flux for 10 m long absorber tubes of different inner diameters and wall thicknesses with thermal conductivity of 16.27 W/mK between the Reynolds number range of 4000 and 210,000 based on the inlet temperature. The results showed that the average internal heat transfer coefficients for the 360° span of circumferential uniform heat flux with different concentration ratios on absorber tubes of the same inner diameters, wall thicknesses and thermal conductivity were approximately the same, but the average overall heat transfer coefficient increased with the increase in the concentration ratios of the uniform heat flux incident on the tubes. Also, the average internal heat transfer coefficient for the absorber tube with a 360° span of uniform heat flux was approximately the same as that of the absorber tubes with the sinusoidal circumferential non-uniform heat flux span of 160°, 180°, 200° and 240° for the heat flux of the same concentration ratio, but the average overall heat transfer coefficient for the uniform heat flux case was higher than that of the non-uniform flux distributions. The average axial local internal heat transfer coefficient for the 360° span of uniform heat flux distribution on a 10 m long absorber tube was slightly higher than that of the 160°, 200° and 240° span of non-uniform flux distributions at the Reynolds number of 4 000. The average internal and overall heat transfer coefficients for four absorber tubes of different inner diameters and wall thicknesses and thermal conductivity of 16.27 W/mK with 200° span of circumferential non-uniform flux were found to increase with the decrease in the inner-wall diameter of the absorber tubes. The numerical results showed good agreement with the Nusselt number experimental correlations for fully developed turbulent flow available in the literature.
机译:太阳能集热器的吸收器管对太阳能集热器系统的性能产生巨大影响。在此数值研究中,研究了圆周均匀和不均匀的太阳热通量分布对线性菲涅尔太阳能集热器的吸收器内部和整体传热系数的影响。基于ANSYS Fluent代码版本14进行了3D稳态数值模拟。将不均匀的太阳热通量分布建模为入射在吸收管圆周上的集中太阳热通量的正弦函数。使用k-ε模型来模拟传热流体通过吸收管的湍流。在模型中还考虑了管壁的热传导以及对流向周围的对流和辐射热损失。确定了10 m长吸收管的正弦形周向不均匀热通量分布跨度为160°,180°,200°和240°以及周向均匀热通量的360°跨度的平均内部和整体传热系数根据入口温度,在4000雷诺数范围和210,000雷诺数范围之间具有不同的内径和壁厚,导热系数为16.27 W / mK。结果表明,在相同内径,壁厚和导热系数的吸收管上,不同浓度比的圆周均匀热通量在360°范围内的平均内部传热系数大致相同,但平均总传热系数随着入射在管子上的均匀热通量的集中比的增加而增加。同样,具有均匀热通量的360°跨度的吸收器管的平均内部传热系数与具有160°,180°,200°正弦周向非均匀热通量的吸收器管的平均内部传热系数大致相同。相同浓度比的热通量为240°,但均匀热通量情况下的平均总传热系数高于非均匀通量分布。在10 m长的吸收器管上均匀热通量分布的360°跨度的平均轴向局部内部传热系数略高于雷诺兹的不均匀通量分布的160°,200°和240°跨度的平均轴向局部内部传热系数数为4000。发现四个内径和壁厚不同的吸热管的平均内部和整体传热系数以及周向非均匀通量为200°跨度的热导率为16.27 W / mK时,传热系数减小。吸收管的内壁直径。数值结果与文献中可得到的充分发展的湍流的努塞尔数实验相关性很好地吻合。

著录项

  • 来源
    《Solar Energy》 |2014年第9期|381-397|共17页
  • 作者单位

    Department of Mechanical and Aeronautical Engineering, University of Pretoria, Pretoria, Private Bag X20, Hatfield 0028, South Africa;

    Department of Mechanical and Aeronautical Engineering, University of Pretoria, Pretoria, Private Bag X20, Hatfield 0028, South Africa;

    Department of Mechanical and Aeronautical Engineering, University of Pretoria, Pretoria, Private Bag X20, Hatfield 0028, South Africa;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Absorber tube; Solar heat flux; Numerical simulation; Heat transfer coefficients;

    机译:吸收管太阳热通量;数值模拟传热系数;

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