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Enhancement of flow boiling in meso scale channels with subsonic vibrations

机译:亚音速振动增强中尺度水流的沸腾

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Heat transfer coefficients were measured for forced convection refrigerant mixture (R-407C) flow in meso-scale heat exchangers enhanced by subsonic vibration. Flow in three horizontal meso-channels (ID 1.0 mm, 2.0 mm, and 4 mm), and a length of 60 mm for subcooled and saturated boiling conditions are reported in this study. Experiments were conducted at heat fluxes of 2 and 11 kW/m~2 for subcooled boiling, and 15 and 29 kW/m~2 for saturated boiling. The mass flow rate was varied from 0.45 to 1.85 kg/min. The frequency was varied, freq=0-70 Hz. An experimental setup composed of heating elements provided heat flux variations in the meso-channels and excitation elements were attached to the side of the channels to produce the subsonic vibrations. The heat transfer coefficient was found to be dependent on both the heat flux as well as mass flux levels. Results show that subsonic vibration enhanced the heat transfer performance over that of non enhanced meso-channels by 8% as compared to regular flow convective boiling process.
机译:测量了在亚音速振动增强的中尺度热交换器中强制对流制冷剂混合物(R-407C)流动的传热系数。在此研究中,报告了三个水平中观通道(内径1.0 mm,2.0 mm和4 mm)中的流动,过冷和饱和沸腾条件下的流动长度为60 mm。对于过冷沸腾,在2和11 kW / m〜2的热通量下,对于饱和沸腾,在15和29 kW / m〜2的热通量上进行了实验。质量流率从0.45至1.85kg / min变化。频率是变化的,freq = 0-70 Hz。由加热元件组成的实验装置可在中观通道中提供热通量变化,而激励元件则连接到通道的侧面以产生亚音速振动。发现传热系数既取决于热通量,也取决于质量通量水平。结果表明,与常规流动对流沸腾过程相比,亚音速振动使传热性能比未增强的介观通道提高了8%。

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