A REVIEW OF POOL BOILING HEAT TRANSFER PROPERTIES BY NANOFLUID

IF 0.6 Q3 ENGINEERING, MULTIDISCIPLINARY
M. S. A., A. Hassan
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引用次数: 0

Abstract

Boiling heat transfer has maintained a high degree of interest due to the range of its applications in the energy sector. In recent years, much research has focused on improving the nucleate pool boiling by modifying the fluid properties. In this review article, the basic properties and characteristics of Al2O3 nanofluids and few other nanofluids are explored and discussed through past research findings. Next, previous studies that involved pool boiling heat transfer enhancement using Al2O3 nanofluid and its performance in terms of critical heat flux (CHF) and heat transfer coefficient (HTC) are further highlighted. These studies have employed methods that affected the performance of CHF and HTC such as electric field and surface modification. Maximum enhancement in CHF measured is approximately 200%. On the other hand, usage of prediction models to predict enhancements are also discussed thoroughly. Regardless of boiling performance enhancements with the deployment of nanofluids, several concerns must first be addressed before it is able to be deployed for practical use.
纳米流体池沸腾换热特性研究进展
沸腾传热由于其在能源领域的广泛应用而一直备受关注。近年来,许多研究都集中在通过改变流体性质来改善核池沸腾。本文通过以往的研究成果,对Al2O3纳米流体和其他几种纳米流体的基本性质和特性进行了探讨和讨论。接下来,进一步强调了先前使用Al2O3纳米流体增强池沸腾传热的研究及其在临界热通量(CHF)和传热系数(HTC)方面的性能。这些研究采用了影响CHF和HTC性能的方法,如电场和表面改性。CHF的最大增强量约为200%。另一方面,还深入讨论了使用预测模型来预测增强。无论纳米流体的部署增强了沸腾性能,在能够部署用于实际使用之前,必须首先解决几个问题。
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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来源期刊
Jurnal Teknologi-Sciences & Engineering
Jurnal Teknologi-Sciences & Engineering ENGINEERING, MULTIDISCIPLINARY-
CiteScore
1.30
自引率
0.00%
发文量
96
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