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Performance enhancement of a curved solar air heater using CFD

机译:使用CFD提高弯曲太阳能热水器的性能

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In this paper, we report the investigation of various curved solar air heater designs that shows significant enhancement of heat transfer. We have taken the initial design proposed in the reference: Mahboub, C., Moummi, N., Brima, A., Moummi, A., 2015. Experimental study of new solar air heater design. International Journal of Green Energy 13,521-529, and incorporated promising design modifications to further look for the avenues for thermal efficiency enhancement features. The Computational Fluid Dynamic (CFD) model was first validated by the results reported by Mahboub et al. It was observed that secondary vortex formation near the absorber wall increases the Nusselt number significantly. New correlations for friction factor and Nusselt number has been developed as a function of Reynolds number and various geometric parameters such as relative groove height and pitch ratios for different design of air heaters. It is hoped that data of parameters i.e. Nusselt number (Nu), outlet air temperature (T-o), thermal efficiency (eta(th)) and friction factor (f) presented in this paper would help researchers and industry in developing efficient designs of solar collectors.
机译:在本文中,我们报告了对各种弯曲太阳能空气加热器设计的研究,这些研究表明传热显着增强。我们采用了参考文献中提出的初始设计:Mahboub,C.,Moummi,N.,Brima,A.,Moummi,A.,2015。新型太阳能空气加热器设计的实验研究。国际绿色能源杂志13,521-529,并纳入了有前途的设计修改,以进一步寻找提高热效率功能的途径。 Mahboub等人报告的结果首先验证了计算流体动力学(CFD)模型。观察到,在吸收器壁附近形成二次涡旋显着增加了努塞尔数。已经开发出摩擦系数和努塞尔数的新的相关性,作为雷诺数和各种几何参数的函数,例如针对不同设计的空气加热器的相对凹槽高度和螺距比。希望本文提出的参数数据,如努塞尔特数(Nu),出口空气温度(To),热效率(eta(th))和摩擦系数(f),将有助于研究人员和工业界开发太阳能的有效设计。收藏家。

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