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OIL EFFECTS ON IN-TUBE EVAPORATION OF CO_2 BY ALTERING FLOW REGIME AND PROPERTIES

机译:改变流动方式和性能对机油对CO_2蒸发的影响

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Flow boiling heat transfer characteristics of CO_2 with and without oil were investigated experimentally in horizontal smooth and enhanced tubes with an inner diameter of 11.2 mm. The visualization of flow pattern provides a detailed attributes of the nucleate and the convective boiling heat transfer. In order to investigate the effect of the miscible oil on the heat transfer of CO_2, POE (polyolester) RENSIO C85E oil is added to give an oil circulation rate (OCR) between 0.5% and 2%. Results are compared with those of pure CO_2. The experimental conditions include evaporation temperatures of -15 °C, mass fluxes from 40 to 200 kg/m~2 s, heat fluxes from 0.5 to 10 kW/m~2, and vapor qualities from 0.1 to 0.8. Oil generally deteriorates the heat transfer coefficient of pure CO_2. The reduction in heat transfer coefficient is most apparent at low vapor qualities, 0.1 to 0.4, and at low mass fluxes, 100 and 200 kg/m~2. It is caused by the suppression of nucleate boiling due to increased surface tension. At conditions where the convective boiling contribution is dominant, vapor qualities above 0.5, oil increases heat transfer coefficients. Through visualization, it is shown that the wetted area on the perimeter of inner tube is enhanced due to formation of foaming in the smooth tube. However, such enhancement of heat transfer due to forming is negligible in the enhanced tube, because the enhanced factor due to micro-finned structures is dominant.
机译:在内径为11.2mm的水平光滑管和增强管中,实验研究了有油和无油时CO_2的流沸腾传热特性。流动模式的可视化提供了成核和对流沸腾传热的详细属性。为了研究混溶油对CO_2传热的影响,添加了POE(多酯)RENSIO C85E油,使油循环率(OCR)在0.5%至2%之间。将结果与纯CO_2的结果进行比较。实验条件包括蒸发温度为-15°C,质量通量为40至200 kg / m〜2 s,热通量为0.5至10 kW / m〜2和蒸气质量为0.1至0.8。油通常会降低纯CO_2的传热系数。在低蒸汽质量(0.1至0.4)和低质量通量(100和200 kg / m〜2)下,传热系数的降低最为明显。这是由于表面张力增加导致的核沸腾抑制所致。在对流沸腾占主导地位的条件下,蒸气质量高于0.5时,油会增加传热系数。通过可视化显示,由于在光滑管中形成泡沫,内管周边上的润湿区域增加了。然而,由于形成的传热的这种增强在增强的管中可忽略不计,因为由微翅片结构引起的增强的因素是主要的。

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