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混合纳米流体作为用于潜在光伏/热和太阳能应用的可再生且可持续的胶体悬浮液。

Hybrid Nanofluids as Renewable and Sustainable Colloidal Suspensions for Potential Photovoltaic/Thermal and Solar Energy Applications.

作者信息

Rasheed Tahir, Hussain Tariq, Anwar Muhammad Tuoqeer, Ali Jazib, Rizwan Komal, Bilal Muhammad, Alshammari Fwzah H, Alwadai Norah, Almuslem Amani Saleh

机构信息

Interdisciplinary Research Center for Advanced Materials, King Fahd University of Petroleum and Minerals (KFUPM), Dhahran, Saudi Arabia.

Department of Mathematics, Faculty of Basic Sciences, University of Wah, Wah Cantt, Pakistan.

出版信息

Front Chem. 2021 Sep 27;9:737033. doi: 10.3389/fchem.2021.737033. eCollection 2021.

Abstract

The comparative utilization of solar thermal or photovoltaic systems has significantly increased to fulfill the requirement of electricity and heat since few decades. These hybrid systems produce both thermal and electrical energy simultaneously. In recent times, increasing interest is being redirected by researchers in exploiting variety of nanoparticles mixed with miscellaneous base fluids (hybrid nanofluid) for these hybrid systems. This new class of colloidal suspensions has many fascinating advantages as compared to conventional types of nanofluids because of their modified and superior rheological and thermophysical properties which makes them appealing for solar energy devices. Here, we have attempted to deliver an extensive overview of the synthetic methodologies of hybrid nanofluids and their potential in PV/T and solar thermal energy systems. A detailed comparison between conventional types of nanofluids and hybrid nanofluids has been carried out to present in-depth understanding of the advantages of the hybrid nanofluids. The documented reports reveal that enhanced thermal properties of hybrid nanofluids promise the increased performance of solar thermal PV/T systems. Additionally, the unique properties such as nanoparticles concentration and type of base fluid, etc. greatly influence the behavior of hybrid nanofluidic systems. Finally, the outlook, suggestions, and challenges for future research directions are discussed.

摘要

在过去几十年里,太阳能热利用系统或光伏系统的综合利用率显著提高,以满足电力和热力需求。这些混合系统能同时产生热能和电能。近年来,研究人员对开发各种与不同基础流体混合的纳米颗粒(混合纳米流体)用于这些混合系统的兴趣日益浓厚。这类新型胶体悬浮液与传统类型的纳米流体相比具有许多引人入胜的优势,因为它们具有改性的、优越的流变学和热物理性质,这使得它们对太阳能设备具有吸引力。在此,我们试图对混合纳米流体的合成方法及其在光伏/热和太阳能热利用系统中的潜力进行全面概述。对传统类型的纳米流体和混合纳米流体进行了详细比较,以深入了解混合纳米流体的优势。已发表的报告表明,混合纳米流体增强的热性能有望提高太阳能热光伏/热系统的性能。此外,纳米颗粒浓度和基础流体类型等独特性质对混合纳米流体系统的行为有很大影响。最后,讨论了未来研究方向的前景、建议和挑战。

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