Evacuated tubes solar air collectors: A review on design configurations, simulation works and applications

Nabila Sulaiman, Sany Izan Ihsan, Syed Noh Syed Abu Bakar, Zafri Azran Abdul Majid, Zairul Azrul Zakaria
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引用次数: 1

Abstract

One of the primary components of solar energy utilization systems is evacuated tube solar air collectors (ETSACs). The irradiance is absorbed by these collectors, which is then transformed into thermal energy at the absorbing surface before being transmitted to the air passing through the collectors. This type of collector outperforms flat plate collectors in terms of reducing heat loss through conduction and convection and also during cloudy days; thus, ETSACs are the most preferred collectors to be applied for space heating, crop drying, and industrial applications. This review focuses on a summary of design configurations, simulation works, and applications of ETSACs in order to understand the influence of the thermal performance of ETSACs so that these collectors can be applied more effectively. Studies on the use of nanofluids as thermal performance enhancers and phase change materials as thermal storage media can be considered to enhance the thermal performance of ETSACs.
真空管太阳能集热器:设计结构、仿真工作及应用综述
真空管太阳能集热器是太阳能利用系统的主要组成部分之一。辐照度被这些集热器吸收,然后在吸收表面转化为热能,然后传输到通过集热器的空气中。这种类型的集热器优于平板集热器在减少热量损失方面,通过传导和对流,也在阴天;因此,etsac是应用于空间加热,作物干燥和工业应用的最优选集热器。本文对ETSACs的设计配置、模拟工作和应用进行了综述,旨在了解ETSACs热性能的影响,从而使ETSACs集热器能够更有效地应用。可以考虑利用纳米流体作为热性能增强剂和相变材料作为储热介质来提高etsac的热性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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