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首页> 外文期刊>Science and Technology for the Built Environment >Experimental investigation of two phase flow boiling heat transfer of mixtures of refrigerant R410A and nanolubricants in a horizontal smooth copper tube
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Experimental investigation of two phase flow boiling heat transfer of mixtures of refrigerant R410A and nanolubricants in a horizontal smooth copper tube

机译:水平光滑铜管中制冷剂R410A和纳米磺酸盐混合物两相流沸热的实验研究

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摘要

In air conditioning systems, a small amount of lubricant leaves the compressor and circulates through the system. The lubricant acts as a contaminant, affecting heat transfer and pressure losses in heat exchangers. The mixture of refrigerant and nanolubricants (NLs), that is, nanoparticles dispersed in the lubricant oil, have shown potential to augment the two-phase flow boiling heat transfer in the literature. However, the mechanisms of heat transfer enhancements due to the NLs are still not well understood. Published models of two-phase flow boiling lack experimental validation with refrigerant and NL mixture. This work addresses this gap by presenting new experimental heat transfer coefficient and pressure drop results for the saturated two-phase flow boiling of R410A with two NLs in a 9.5 mm I.D. smooth copper tube: a ZnO nanoparticle laden lubricant and a gamma-Al2O3 nanoparticle laden lubricant. In smooth tube, R410A-NL mixtures, which had higher thermal conductivity and kinematic viscosity than R410A-POE lubricant mixture, showed degradation in heat transfer coefficient compared to R410A-POE lubricant case; but they also had lower pressure drops. Relocation of the nanoparticles closer to the inner wall of the tube could lead to enhancement in heat transfer at an expense of increased frictional pressure drop.
机译:在空调系统中,少量润滑剂留下了压缩机并通过系统循环。润滑剂用作污染物,影响热交换器中的传热和压力损失。制冷剂和纳米润滑剂(NLS)的混合物,即分散在润滑油中的纳米颗粒,已经示出了增强文献中的两相流沸热传递的可能性。然而,由于NLS引起的传热增强机制仍然不太了解。发布的两相流沸石模型缺乏制冷剂和NL混合物的实验验证。这项工作通过呈现新的实验传热系数和压力下降来解决该差距,对于9.5mm I.D的饱和两相流沸腾的R410A的饱和两相流沸腾。光滑的铜管:ZnO纳米粒子载载润滑剂和γ-al2O3纳米粒子载载润滑剂。在光滑的管中,与R410A-POE润滑剂盒相比,R410A-NL混合物具有较高的导热率和运动粘度,其具有比R410A-POE润滑剂混合物的降解。但它们也有较低的压降。纳米颗粒更靠近管内壁的纳米颗粒可能导致热传递的增强,以牺牲摩擦压降增加。

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