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

Гибридные наножидкости как возобновляемые и устойчивые коллоидные суспензии для потенциальных фотоэлектрических/тепловых и солнечных энергетических приложений
Muhammad Tuoqeer Anwar, Muhammad Bilal, Tahir Rasheed, Tariq Hussain, Komal Rızwan, Norah Alwadai, Jazib Ali, Fwzah H. Alshammari, Amani Saleh Almuslem
2021-09-27

hybrid nanofluidsnanoparticle concentration and base fluid typephotovoltaic/thermal (PV/T) systemssolar thermal energythermophysical and rheological properties
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.
1
Enhanced thermal properties of hybrid nanofluids can increase the performance of photovoltaic/thermal (PV/T) and solar thermal systems.
2
Hybrid nanofluids (various nanoparticles in base fluids) exhibit modified and superior rheological and thermophysical properties compared to conventional nanofluids.
3
Nanoparticle concentration and the type of base fluid are critical factors that greatly influence hybrid nanofluid behavior and performance.
4
The paper provides an extensive overview of synthesis methodologies and a detailed comparison between conventional nanofluids and hybrid nanofluids.
5
The review identifies outlook, suggestions, and challenges, highlighting future research directions for hybrid nanofluids in solar energy applications.

Hybrid nanofluids (colloidal suspensions of multiple nanoparticle types in base fluids) used in photovoltaic/thermal (PV/T) and solar thermal systems

Thermophysical and rheological properties and their influence on performance of PV/T and solar thermal systems, including effects of nanoparticle concentration and base-fluid type

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2021-09-27
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Muhammad Tuoqeer Anwar
Muhammad Bilal
Tahir Rasheed
Tariq Hussain
Komal Rızwan
Norah Alwadai
Jazib Ali
Fwzah H. Alshammari
Amani Saleh Almuslem
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