Refrigerant-oil mixtures boiling in a planar confined space

Ch. Marvillet, R. de Carvahlo
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引用次数: 5

Abstract

In the frame of the JOULE 1 R&D programme of the Commission of the European Communities a project has been carried out on enhanced evaporation heat transfer surfaces. A specific investigation has been realised on refrigerant oil mixtures boiling in a planar confined space.

An experimental investigation of the boiling phenomenon in the confined space between a 30 mm wide × 120 mm high, heated plate and an opposing, adiabatic plate was carried out. The heated surface was made of a copper-aluminium-nickel alloy (Ra = 1 micrometer) and a saturated R-113/SUNISO 3GS oil mixture at atmospheric pressure was used as the boiling fluid.

The maximum heat flux tested was approximately 90% of CHF. The parameters investigated were the gap size (1–5 mm) and the oil concentration (1–7% by weight). It was again observed that confinement does not improve the nucleate boiling performance of pure R-113 in any significant way, whereas the CHF decreases with decreasing gap size. In addition, while the presence of oil was observed to have only a relatively minor effect on low flux nucleate boiling, it caused a serious degradation of the high flux boiling performance. This deterioration increased with increasing oil concentration and was more severe for smaller gap sizes. However, for a given gap size, the CHF increased with increasing oil concentration accompanied by increasingly larger surface superheats.

在平面密闭空间内沸腾的制冷剂-油混合物
在欧洲共同体委员会JOULE 1研究和发展方案的框架内,进行了一个关于强化蒸发传热表面的项目。对冷冻油混合物在平面密闭空间内的沸腾进行了具体的研究。对30 mm宽× 120 mm高的加热板与相对绝热板之间的密闭空间内的沸腾现象进行了实验研究。加热表面为铜铝镍合金(Ra = 1微米),沸腾流体为常压下饱和的R-113/SUNISO 3GS混合油。测试的最大热通量约为CHF的90%。研究的参数为间隙大小(1-5 mm)和油浓度(1-7%重量)。禁闭对纯R-113的核沸腾性能没有显著的改善,而CHF随间隙大小的减小而减小。此外,虽然观察到油的存在对低通量的核沸腾只有相对较小的影响,但它会严重降低高通量的沸腾性能。这种恶化随着油浓度的增加而加剧,当间隙尺寸较小时更为严重。然而,对于一定间隙尺寸,CHF随着油浓度的增加而增加,同时表面过热也越来越大。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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