Departamento de Ingeniería Mecánica Eléctrica, Universidad de Piura, Piura, Peru.
Departamento de Ciencias de la Ingeniería, Universidad de Piura, Piura, Peru.
J Environ Manage. 2017 Dec 1;203(Pt 3):1080-1094. doi: 10.1016/j.jenvman.2017.07.015. Epub 2017 Jul 17.
In the northern coastal and jungle areas of Peru, cocoa beans are dried using artisan methods, such as direct exposure to sunlight. This traditional process is time intensive, leading to a reduction in productivity and, therefore, delays in delivery times. The present study was intended to numerically characterise the thermal behaviour of three configurations of solar air heating collectors in order to determine which demonstrated the best thermal performance under several controlled operating conditions. For this purpose, a computational fluid dynamics model was developed to describe the simultaneous convective and radiative heat transfer phenomena under several operation conditions. The constructed computational fluid dynamics model was firstly validated through comparison with the data measurements of a one-step solar air heating collector. We then simulated two further three-step solar air heating collectors in order to identify which demonstrated the best thermal performance in terms of outlet air temperature and thermal efficiency. The numerical results show that under the same solar irradiation area of exposition and operating conditions, the three-step solar air heating collector with the collector plate mounted between the second and third channels was 67% more thermally efficient compared to the one-step solar air heating collector. This is because the air exposition with the surface of the collector plate for the three-step solar air heating collector former device was twice than the one-step solar air heating collector.
在秘鲁北部沿海和丛林地区,可可豆采用人工方法干燥,例如直接暴露在阳光下。这种传统的方法需要大量的时间,导致生产力下降,因此交货时间也会延迟。本研究旨在对三种太阳能空气加热集热器的热性能进行数值模拟,以确定在几种控制操作条件下哪种集热器具有最佳的热性能。为此,开发了一个计算流体动力学模型来描述在几种操作条件下的同时对流和辐射传热现象。所构建的计算流体动力学模型首先通过与一步式太阳能空气加热集热器的数据测量进行比较来验证。然后,我们模拟了另外两个三步式太阳能空气加热集热器,以确定哪个在出口空气温度和热效率方面表现出最佳的热性能。数值结果表明,在相同的太阳辐射面积和操作条件下,与一步式太阳能空气加热集热器相比,集热器板安装在第二和第三通道之间的三步式太阳能空气加热集热器的热效率提高了 67%。这是因为对于前一种三步式太阳能空气加热集热器装置,空气与集热器板表面的暴露时间是一步式太阳能空气加热集热器的两倍。