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首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Numerical study of the natural convection process in the parabolic-cylindrical solar collector
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Numerical study of the natural convection process in the parabolic-cylindrical solar collector

机译:抛物柱面形太阳能集热器自然对流过程的数值研究

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摘要

This paper deals with numerical prediction of natural convection heat transfer in the annular space between the circular receiver tube and the glass envelope in the so parabolic-cylindrical solar collector,for the case of an isothermal outer cylinder with a sinusoidal local heat flux distribution on the inner cylinder.The dimensional Darcy-Boussinesq's equations are formulated in bicylindrical coordinates and solved numerically using finite-difference based on successive-overrelaxation iteration.The parametric effect on the heat transfer characteristics is discussed with respect to eccentricity and azimuthal angular location of the inner cylinder for eccentric annulus.The two-dimensional structure of the fluid flow and temperature distributions as well as local and average Nusselt numbers are obtained.It is demonstrated that the heat transfer in the annulus can indeed be optimized by a proper choice of the eccentricity.
机译:本文研究了抛物柱面形太阳能收集器中圆形接收管与玻璃外壳之间的环形空间中自然对流传热的数值预测,对于等温外圆柱体,其正弦局部热通量分布在玻璃上的情况。在双圆柱坐标系中建立维Darcy-Boussinesq方程,并基于连续过松弛松弛迭代使用有限差分法进行数值求解。讨论了关于传热特性的参数影响(关于内圆柱的偏心率和方位角位置)获得了流体流动和温度分布的二维结构,以及局部和平均努塞尔数,这表明通过适当选择偏心度确实可以优化环空中的传热。

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