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Effects of geometry and dimension of micro/nano-structures on the heat transfer in dropwise condensation: A theoretical study

机译:微/纳米结构几何和尺寸对滴加缩小的热传递的影响:理论研究

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摘要

Condensation is a phase change phenomenon which has many applications in the field of refrigeration, power plants and air-conditioning. It is well-known that dropwise condensation (DWC) has a considerably higher heat transfer than filmwise condensation. DWC occurs on hydrophobic and superhydrophobic surfaces (SHS). Research has shown that micro/nano structures are necessary for producing SHS. The geometry and dimensions of the structures could affect DWC heat transfer. In this research, a numerical study has been done to explore how much the configuration of these structures could change heat transfer in DWC. To attain this goal, two different structures, including semi-conical and semi-pyramidal and their limit states including prismatic and cylindrical structures have been considered. Effects of different parameters including the shape of the structures, roughness factor, and solid fraction on the single droplet and total heat transfer have been studied. Results show that the configuration of structures could significantly affect DWC heat transfer. For instance, at a constant roughness factor and solid fraction, semi-conical or pyramidal pillars have about 2.5-4.5 times higher total heat transfer than prismatic or cylindrical pillars. The shape of pillars could change the small droplet population by about 10%.
机译:冷凝是一种相变现象,在制冷,发电厂和空调领域具有许多应用。众所周知,滴缩(DWC)具有比胶片缩合相当高的热传递。 DWC发生在疏水和超疏水表面(SHS)上。研究表明,微/纳米结构是生产SHS所必需的。结构的几何形状和尺寸可能影响DWC传热。在这项研究中,已经进行了一个数值研究来探讨这些结构的配置有多大量可以改变DWC的热传递。为了获得这一目标,已经考虑了两个不同的结构,包括半圆锥和半金字塔和它们的极限状态,包括包括棱柱形和圆柱形结构。研究了包括结构形状,粗糙因子和固体分数的不同参数的影响,并进行了单滴和总热传递。结果表明,结构的配置可以显着影响DWC传热。例如,在恒定的粗糙度因子和固体级分,半圆锥或金字塔柱的总热传递大约比棱柱形或圆柱形柱更高约2.5-4.5倍。柱的形状可以将小液滴种群变为约10%。

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