Thermophysical properties and heat transfer in mono and hybrid nanofluids with different base fluids: an overview

被引:0
|
作者
T. Kanthimathi
P. Bhramara
Vinay Atgur
B. Nageswara Rao
Nagaraj R. Banapurmath
Ashok M. Sajjan
Irfan Anjum Badruddin
Sarfaraz Kamangar
T. M. Yunus Khan
Rahmath Ulla Baig
Chandramouli Vadlamudi
Sanjay Krishnappa
机构
[1] Koneru Lakshmaiah Educational Foundation,Deparment of Mechanical Engineering
[2] Jawaharlal Nehru Technological University Hyderabad,Department of Mechanical Engineering
[3] KLE Technological University,Centre of Excellence in Material Science, Department of Mechanical Engineering
[4] King Khalid University,Mechanical Engineering Department, College of Engineering
[5] King Khalid University,Industrial Engineering Department, College of Engineering
[6] Aerosapien Technologies,Aerospace Integration Engineer
来源
Journal of Thermal Analysis and Calorimetry | 2024年 / 149卷
关键词
Density; Ethylene glycol (EG); Heat transfer coefficient; Particle concentration; Thermal conductivity; Viscosity; Water;
D O I
暂无
中图分类号
学科分类号
摘要
Hybrid nanofluids are a promising class of fluids that combine the advantages of nanoparticles with a base fluid to enhance heat transfer performance. They have potential applications in various fields and are the subject of ongoing research and development. Understanding the properties and behaviour of hybrid nanofluids is essential to explore their potential and optimize their use in various applications. Heat exchangers represent the most widespread thermal devices, and increasing their efficiency is the key to significant energy savings. This review article mainly focuses on the overall heat transfer process analysing the influence of thermophysical properties of single-component and hybrid nanofluids (using different base fluids). Finally, a case study is performed with SiC nanoparticles suspended in a mixture of ethylene glycol (EG) and water (H2O) in a 20:80 volume ratio (20:80 EG–W), whose stability is confirmed by zeta potential determination and showed an increase in heat transfer.
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页码:1649 / 1666
页数:17
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