Faculty of Mechanical Engineering, Semnan University, Semnan, Iran.
Mechanical Engineering Department, Université de Sherbrooke, Sherbrooke, QC, J1K 2R1, Canada.
Environ Sci Pollut Res Int. 2023 Nov;30(51):109921-109954. doi: 10.1007/s11356-023-29815-9. Epub 2023 Oct 4.
This paper reviews the impacts of employing inserts, nanofluids, and their combinations on the thermal performance of flat plate solar collectors. The present work outlines the new studies on this specific kind of solar collector. In particular, the influential factors upon operation of flat plate solar collectors with nanofluids are investigated. These include the type of nanoparticle, kind of base fluid, volume fraction of nanoparticles, and thermal efficiency. According to the reports, most of the employed nanofluids in the flat plate solar collectors include AlO, CuO, and TiO. Moreover, 62.34%, 16.88%, and 11.26% of the utilized nanofluids have volume fractions between 0 and 0.5%, 0.5 and 1%, and 1 and 2%, respectively. The twisted tape is the most widely employed of various inserts, with a share of about one-third. Furthermore, the highest achieved flat plate solar collectors' thermal efficiency with turbulator is about 86.5%. The review is closed with a discussion about the recent analyses on the simultaneous use of nanofluids and various inserts in flat plate solar collectors. According to the review of works containing nanofluid and turbulator, it has been determined that the maximum efficiency of about 84.85% can be obtained from a flat plate solar collector. It has also been observed that very few works have been done on the combination of two methods of employing nanofluid and turbulator in the flat plate solar collector, and more detailed work can still be done, using more diverse nanofluids (both single and hybrid types) and turbulators with more efficient geometries.
本文综述了在平板式太阳能集热器中采用插入物、纳米流体及其组合对热性能的影响。本工作概述了这种特殊类型的太阳能集热器的新研究。特别地,研究了纳米流体平板式太阳能集热器的操作的影响因素。这些因素包括纳米颗粒的类型、基液的种类、纳米颗粒的体积分数和热效率。根据报告,在平板式太阳能集热器中使用的大多数纳米流体包括 AlO、CuO 和 TiO。此外,62.34%、16.88%和 11.26%的纳米流体的体积分数分别在 0 到 0.5%、0.5 到 1%和 1 到 2%之间。在各种插入物中,扭曲带是应用最广泛的,约占三分之一。此外,采用扰流片时,平板式太阳能集热器的最高热效率约为 86.5%。本文以讨论同时在平板式太阳能集热器中使用纳米流体和各种插入物的最新分析结束。根据含有纳米流体和扰流片的工作的综述,已经确定可以从平板式太阳能集热器获得约 84.85%的最大效率。还观察到,很少有工作同时采用纳米流体和扰流片两种方法在平板式太阳能集热器中,还可以做更详细的工作,使用更多样化的纳米流体(单和混合类型)和具有更高效率的几何形状的扰流片。