Nucleate Pool Boiling Heat Transfer Correlation for TiO2-Water Nanofluids

A. Suriyawong, A. S. Dalkılıç, S. Wongwises
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引用次数: 14

Abstract

This paper is a continuation of the authors’ previous work on the nucleate pool boiling heat transfer of nanofluids [Suriyawong, A. and Wongwises, S., “Nucleate pool boiling heat transfer characteristics of TiO2-water nanofluids at very low concentrations,” Exp. Therm. Fluid Sci., Vol. 34, No. 8, 2010, pp. 992–999.] This study presents new correlation for predicting heat transfer coefficient for nucleate pool boiling of TiO2-water nanofluids at several low concentrations. Unlike most previous studies, the proposed correlation consists of various relevant factors. Two horizontal circular plates made from copper and aluminum with different surface roughness values are used as heating surfaces. Because the calculation concerns with properties of nanofluids, this research uses various correlations from previous studies to find the properties of nanofluids and the best one is selected for the presentation. Compared with measured data of nucleate pool boiling of water and nanofluids from present and previous studies, it was found that the developed correlation could be used for prediction at a certain level.
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二氧化钛-水纳米流体的核池沸腾传热相关性研究
本文是作者对纳米流体的核池沸腾传热研究的延续[Suriyawong, a .和Wongwises, S., " tio2 -水纳米流体在极低浓度下的核池沸腾传热特性," Exp. Therm。流体科学。,第34卷第8期,2010年,第992-999页。该研究为预测几种低浓度tio2 -水纳米流体的核池沸腾传热系数提供了新的相关性。与以往大多数研究不同的是,本文提出的相关性包含了各种相关因素。两个由不同表面粗糙度值的铜和铝制成的水平圆形板用作加热表面。由于计算涉及到纳米流体的性质,本研究使用了前人研究中的各种相关性来寻找纳米流体的性质,并选择了最好的一个进行展示。通过与现有研究和前人研究的水和纳米流体的核池沸腾的实测数据进行比较,发现所建立的相关性在一定程度上可以用于预测。
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