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首页> 外文期刊>International Journal of Thermal Sciences >Heat and mass transfer coefficients of falling-film absorption on a partially wetted horizontal tube
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Heat and mass transfer coefficients of falling-film absorption on a partially wetted horizontal tube

机译:部分湿润的水平管上落膜吸收的热量和传质系数

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AbstractDetailed, reliable, and time-saving methods to predict the transfer characteristics of horizontal-tube falling-film absorbers are critical to control system operability, such that it is closer to its technical limitations, and to optimise increasingly complex configurations. In this context, analytical approaches continue to hold their fundamental importance. This study presents an analytical solution of the governing transport equations of film absorption around a partially wetted tube. A film stability criterion and a wettability model extend the validity range of the resulting solution and increase its accuracy. Temperature and mass fraction fields are analytically expressed as functions of Prandtl, Schmidt, and Reynolds numbers as well as tube dimensionless diameter and wetting ratio of the exchange surface. Inlet conditions are arbitrary. The Lewis number and a dimensionless heat of absorption affect the characteristic equation and the corresponding eigenvalues. Consequently, local and average transfer coefficients are estimated and discussed with reference to the main geometrical and operative parameters. Finally, a first comparison with the numerical solution of the problem and experimental data from previous literature is presented to support the simplifying assumptions, which are introduced and as a first model validation.Highlights?Analytical solution of the fundamental equations of falling film absorption.?Partial wetting, tube geometry and arbitrary inlet conditions are considered.?Widely applicable expressions of the transfer coefficients are obtained.?The importance of including partial wetting effects is highlighted.?Noteworthy agreement with experiments and numerical simulations.]]>
机译:<![CDATA [ 抽象 详细,可靠,节省时间来预测水平管落膜吸收器的转移特性控制系统可操作性至关重要,使其更接近其技术限制,并优化越来越复杂的配置。在这种情况下,分析方法继续持有其基本重要性。该研究介绍了部分湿管围绕膜吸收的控制输送方程的分析解决方案。薄膜稳定性标准和润湿性模型延长了所得溶液的有效性范围并提高其精度。温度和质量分数场被分析表示为prandtl,schmidt和reynolds数字的功能,以及交换表面的管无量纲和润湿比。入口条件是任意的。刘易斯数和无量纲的吸收热影响特征方程和相应的特征值。因此,估计局部和平均转移系数并参考主要几何和操作参数讨论。最后,提出了与来自先前文献的问题的数值解决方案和来自先前文献的实验数据的第一次比较,以支持简化的假设,这是引入的和作为第一模型验证的假设。 亮点 下降膜吸收基本方程的分析解决方案。 部分润湿,管几何和任意入口条件被考虑。 获得了传输系数的广泛应用表达式。 包括部分润湿效果的重要性被突出显示。 值得注意的实验和数值模拟。 ]]>

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