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On the Role of Nanofluids in Thermal-Hydraulic Performance of Heat Exchangers—A Review

机译:纳米流体在换热器热工液压性能中的作用研究进展

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摘要

Heat exchangers are key components in many of the devices seen in our everyday life. They are employed in many applications such as land vehicles, power plants, marine gas turbines, oil refineries, air-conditioning, and domestic water heating. Their operating mechanism depends on providing a flow of thermal energy between two or more mediums of different temperatures. The thermo-economics considerations of such devices have set the need for developing this equipment further, which is very challenging when taking into account the complexity of the operational conditions and expansion limitation of the technology. For such reasons, this work provides a systematic review of the state-of-the-art heat exchanger technology and the progress towards using nanofluids for enhancing their thermal-hydraulic performance. Firstly, the general operational theory of heat exchangers is presented. Then, an in-depth focus on different types of heat exchangers, plate-frame and plate-fin heat exchangers, is presented. Moreover, an introduction to nanofluids developments, thermophysical properties, and their influence on the thermal-hydraulic performance of heat exchangers are also discussed. Thus, the primary purpose of this work is not only to describe the previously published literature, but also to emphasize the important role of nanofluids and how this category of advanced fluids can significantly increase the thermal efficiency of heat exchangers for possible future applications.
机译:热交换器是我们日常生活中许多设备中的关键组件。它们被用于许多应用中,例如陆地车辆,发电厂,船用燃气轮机,炼油厂,空调和生活热水。它们的运行机制取决于在两种或多种温度不同的介质之间提供热能流。这种设备的热经济学考虑已经提出了进一步开发该设备的需求,当考虑到操作条件的复杂性和技术的扩展限制时,这是非常具有挑战性的。由于这些原因,这项工作对最新的热交换器技术以及使用纳米流体增强其热工液压性能的进展进行了系统的回顾。首先,介绍了换热器的一般工作原理。然后,深入介绍了不同类型的热交换器,板框式热交换器和板翅式热交换器。此外,还讨论了纳米流体的发展,热物理性质及其对热交换器热工液压性能的影响。因此,这项工作的主要目的不仅是描述先前发表的文献,而且还强调纳米流体的重要作用,以及这类先进流体如何显着提高热交换器的热效率,以备将来可能的应用。

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