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Enhancement of critical heat flux in nucleate boiling of nanofluids: a state-of-art review

机译:纳米流体成核沸腾过程中临界热通量的增强:最新进展

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摘要

Nanofluids (suspensions of nanometer-sized particles in base fluids) have recently been shown to have nucleate boiling critical heat flux (CHF) far superior to that of the pure base fluid. Over the past decade, numerous experimental and analytical studies on the nucleate boiling CHF of nanofluids have been conducted. The purpose of this article is to provide an exhaustive review of these studies. The characteristics of CHF enhancement in nanofluids are systemically presented according to the effects of the primary boiling parameters. Research efforts to identify the effects of nanoparticles underlying irregular enhancement phenomena of CHF in nanofluids are then presented. Also, attempts to explain the physical mechanism based on available CHF theories are described. Finally, future research needs are identified.
机译:纳米流体(基础流体中的纳米级颗粒悬浮液)最近已显示出具有比纯基础流体优越的成核沸腾临界热通量(CHF)。在过去的十年中,已经对纳米流体的核沸腾CHF进行了许多实验和分析研究。本文的目的是对这些研究进行详尽的综述。根据主要沸腾参数的影响,系统地介绍了纳米流体中CHF增强的特征。然后提出了研究工作,以确定在纳米流体中CHF的不规则增强现象的纳米颗粒的影响。此外,描述了基于可用的CHF理论解释物理机制的尝试。最后,确定未来的研究需求。

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