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Review and Comparison of Nanofluid Thermal Conductivity and Heat Transfer Enhancements

机译:纳米流体导热系数和传热增强的回顾与比较

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摘要

This study provides a detailed literature review and an assessment of results of the research and development work forming the current status of nanofluid technology for heat transfer applications. Nanofluid technology is a relatively new field, and as such, the supporting studies are not extensive. Specifically, experimental results were reviewed in this study regarding the enhancement of the thermal conductivity and convective heat transfer of nanofluids relative to conventional heat transfer fluids, and assessments were made as to the state-of-the-art of verified parametric trends and magnitudes. Pertinent parameters of particle volume concentration, particle material, particle size, particle shape, base fluid material, temperature, additive, and acidity were considered individually, and experimental results from multiple research groups were used together when assessing results. To this end, published research results from many studies were recast using a common parameter to facilitate comparisons of data among research groups and to identify thermal property and heat transfer trends. The current state of knowledge is presented as well as areas where the data are presently inconclusive or conflicting. Heat transfer enhancement for available nanofluids is shown to be in the 15-40% range, with a few situations resulting in orders of magnitude enhancement.
机译:这项研究提供了详细的文献综述,并评估了研究和开发工作的结果,从而形成了用于传热应用的纳米流体技术的现状。纳米流体技术是一个相对较新的领域,因此,支持研究并不广泛。具体而言,本研究对纳米流体相对于传统传热流体的热导率和对流传热的增强进行了实验研究,并评估了最新的已验证参数趋势和幅度。分别考虑了颗粒体积浓度,颗粒材料,粒径,颗粒形状,基础流体材料,温度,添加剂和酸度的相关参数,并在评估结果时一起使用了多个研究小组的实验结果。为此,使用共同的参数对许多研究的已发表研究结果进行了重铸,以促进研究组之间数据的比较并确定热性质和传热趋势。列出了当前的知识状态以及当前数据尚无定论或矛盾的领域。可用纳米流体的传热增强显示在15-40%的范围内,在少数情况下会导致数量级增强。

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