首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >ANALYSIS OF COUPLED HEAT AND MASS TRANSFER DURING CONDENSATION OF HIGH TEMPERATURE GLIDE ZEOTROPIC MIXTURES IN SMALL CHANNELS
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ANALYSIS OF COUPLED HEAT AND MASS TRANSFER DURING CONDENSATION OF HIGH TEMPERATURE GLIDE ZEOTROPIC MIXTURES IN SMALL CHANNELS

机译:小沟道高温滑动鸟类混合物凝结耦合热量和传质分析

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Condensing zeotropic mixtures have the potential to improve the thermodynamic performance of power generating, cooling, and heating systems. Further improvements can be realized by developing equipment using mini- and microchannels. However, it has been shown that the concentration gradients arising from the changing composition of the vapor and liquid phases during condensation introduce additional mass transfer resistances, degrading the overall heat transfer. Furthermore, the coupled heat and mass transfer in mixtures at this scale is not well understood. Results from experiments on condensation of ammonia/water mixtures at varying concentration (80-100% NH_3), mass flux (G = 50 - 200 kg m~(-2) s~(-1)), and tube diameter (D = 0.98-2.16 mm) are reported here. Other researchers have reported an apparent heat transfer coefficient for zeotropic mixtures, which fails to explicitly account for mass transfer. The present work quantifies the liquid film heat transfer coefficient by accounting for mass transfer through a film model approach, which allows the relative significance of the vapor and liquid heat and mass transfer resistances to be quantified.
机译:冷凝跨胞层混合物具有可提高发电,冷却和加热系统的热力学性能。通过使用迷你和微通道开发设备可以实现进一步的改进。然而,已经表明,从冷凝期间蒸汽和液相变化的组成产生的浓度梯度引入了额外的传质电阻,降低了整体热传递。此外,该规模的混合物中的耦合热量和质量传递并不适合。从不同浓度(80-100%NH_3),质量助熔剂(G = 50-200kg m〜(-2)S〜(-1))和管直径(d =这里报告了0.98-2.16 mm。其他研究人员报告了横发混合物的表观传热系数,这未能明确地解释传质。本工作通过薄膜模型方法算用于质量传递来定量液膜传热系数,这允许量化蒸汽和液体热量和传质电阻的相对意义。

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