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Numerical study on heat and mass transfer characteristic of plate absorber

机译:板式吸收器传热传质特性的数值研究

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摘要

A model of simultaneous heat and mass transfer process in absorption of refrigerant vapor into a lithium bromide solution of water-cooled vertical plate absorber was developed. The model can predict temperature and concentration profiles as well as the absorption heat and mass fluxes, the total heat and mass transfer rates and the heat and mass transfer coefficients. The temperature is the highest at the interface and decreases to the lowest at the wall. In contradiction with the temperature profiles, the concentration is the lowest at the interface and increases to the highest at the wall. The absorption heat and mass fluxes, the total heat and mass transfer rates and the heat and mass transfer coefficients get high values at the inlet region but decrease at the outside of the inlet region. Besides, the effect of operating condition has been investigated and found that the absorption mass flux increases as the inlet cooling water temperature decreases, the system pressure increases, the inlet solution concentration increases, and the inlet solution temperature decreases. An analysis for the constant wall temperature condition has also been carried out to investigate the reliability of the present numerical method through comparing with previous investigations. (c) 2005 Elsevier Ltd. All rights reserved.
机译:建立了水冷垂直板式吸收塔吸收制冷剂蒸气到溴化锂溶液中的传热传质模型。该模型可以预测温度和浓度曲线,以及吸收热量和质量通量,总热量和质量传递速率以及热量和质量传递系数。界面处的温度最高,壁处的温度降低至最低。与温度曲线相反,浓度在界面处最低,而在壁处增加至最高。吸收热和质量通量,总传热和传质速率以及传热和传质系数在入口区域获得较高的值,但在入口区域的外部降低。此外,研究了工作条件的影响,发现吸收质量通量随着入口冷却水温度的降低,系统压力的增加,入口溶液浓度的增加以及入口溶液温度的降低而增加。通过与以前的研究相比较,还进行了恒定壁温条件的分析以研究本数值方法的可靠性。 (c)2005 Elsevier Ltd.保留所有权利。

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