首页> 外文会议>International Conference on Microchannels and Minichannels >FALLING FILM EVAPORATION OF PURE REFRIGERANT HCFC123 IN A VERTICAL RECTANGULAR MINICHANNELE CONSISTING OF OFFSET STRIP FINS
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FALLING FILM EVAPORATION OF PURE REFRIGERANT HCFC123 IN A VERTICAL RECTANGULAR MINICHANNELE CONSISTING OF OFFSET STRIP FINS

机译:纯制冷剂HCFC123的薄膜蒸发在垂直的矩形百分之烷基中,由偏移带翅片组成

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In the present study, the characteristics of heat transfer and flow patterns are experimentally investigated on the falling film evaporation of pure refrigerant HCFC123 in a vertical rectangular minichannel consisting of offset strop fins. The refrigerant liquid is supplied to the channel through 37 holes of a distributor. The liquid flowing down vertically is heated electrically from the rear wall of the channel and evaporated. To observe the flow patterns during the evaporation process directly, a transparent vinyl chloride resin plate is placed as the front wall. The experimental parameters are as follows: the mass velocity G = 28~70 kg/(m~2s), the heat flux q = 20~50 kW/m~2 and the pressure P ≈ 100 kPa. It is clarified that the heat transfer coefficient α depends on G and q in the region of vapor quality x ≥ 0.3 while there is little influence of G and q in the region x ≤ 0.3 . From the direct observation using a high speed video camera and a digital still camera, flow patterns are classified into five typical ones : plane liquid film, wavy liquid film, liquid film accompanied with dry patch, liquid film accompanied with dripping and liquid film accompanied with mist. Then the relation between heat transfer and flow pattern is clarified. The results of heat transfer characteristics are also compared with some previous correlation equations.
机译:在本研究中,在由偏移纺翅片组成的垂直矩形碎片中的纯制冷剂HCFC123的纯制冷剂HCFC123的下降膜蒸发上实验研究了传热和流动模式的特性。制冷剂液体供应到通道通过分配器的37个孔。垂直流动的液体从通道的后壁电气电热并蒸发。为了在直接蒸发过程中观察流动模式,将透明氯乙烯树脂板放置为前壁。实验参数如下:质量速度G = 28〜70kg /(m〜2s),热通量q = 20〜50 kW / m〜2和压力p≈15kpa。阐明了传热系数α取决于蒸汽质量X≥0.3的区域中的G和Q,而G和Q在区域X≤0.3中几乎没有影响。从使用高速摄像机和数码相机的直接观察,流动模式分为五个典型:平面液体膜,波浪液膜,液体膜伴有干贴片,液体膜伴随着滴水和液体膜伴随着薄雾。然后阐明了传热和流动模式之间的关系。与一些先前的相关方程相比,传热特性的结果也被比较。

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