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Parametric study of pool boiling heat transfer with nanofluids for the enhancement of critical heat flux: A review

机译:纳米流体对池沸腾换热提高临界热通量的参数研究

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摘要

Over the last decade, numerous investigations have been carried out using engineered colloidal fluids called nanofluids in pool boiling for the enhancement of critical heat flux (CHF) which is otherwise limited by the use of base fluids. Though there are contradicting results in CHF enhancement, almost all the researchers identified that there is an enhancement in CHF by the addition of nanoparticles (1 -100 nm size) with base fluid. The deposition of nanoparticles on the heater surface during boiling of nanofluids is the major factor for the enhancement of CHF. In fact, the CHF enhancement results are influenced by the various parameters such as size of nanoparticles, method of preparation of nanofluids, and its concentration. This article reviews in detail the various factors for the enhancement of CHF and provides further research direction which helps the readers to understand the pool boiling heat transfer in a better way. Also, the mechanisms of CHF enhancement by exploring various boiling heat transfer theories have been addressed.
机译:在过去的十年中,为提高临界热通量(CHF)的使用,该工程胶体流体被称为纳米流体,在池沸腾中进行了许多研究,否则会受到基础流体的限制。尽管在CHF增强方面有相反的结果,但几乎所有研究人员都发现,通过在基础液中添加纳米粒子(尺寸为-100 nm)可以提高CHF。纳米流体沸腾期间纳米颗粒在加热器表面的沉积是提高CHF的主要因素。实际上,CHF增强结果受各种参数的影响,例如纳米颗粒的大小,纳米流体的制备方法及其浓度。本文详细回顾了提高CHF的各种因素,并提供了进一步的研究方向,以帮助读者更好地理解池沸腾换热。而且,已经探讨了通过探索各种沸腾传热理论来提高CHF的机理。

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