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Numerical simulation on the falling film absorption process in a counter-flow absorber

机译:逆流吸收器降膜吸收过程的数值模拟

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Falling liquid film is commonly employed in variety of industrial systems, such as LiBr/H2O absorption heat pump or chiller. In this paper, the falling film absorption in aqueous lithium bromide solution was investigated numerically using CFD software package-Fluent. The practical convective boundary condition at the cooling water side was considered. The heat transfer coefficient is assumed constant, and the coolant temperature changes linearly along its flow path. The numerical results indicate that the profile of temperature is exponential and their gradients are high due to the distinct heat effect associated with the absorption at the interface and the cooling effect of coolant at the wall at small downstream distance. As the downstream distance increases, the profile of temperature is nearly linear. The absorption heat and mass fluxes reach a maximum at the inlet region and decrease at the outside of the inlet region. Specially, the effect of variable physical properties on the absorption process was considered and discussed. The prediction of the total absorption mass transfer rate is about 6.5% higher when assuming constant properties.
机译:降液膜通常用于各种工业系统中,例如LiBr / H2O吸收热泵或冷却器。本文使用CFD软件包-Fluent对溴化锂水溶液中的降膜吸收进行了数值研究。考虑了冷却水侧的实际对流边界条件。假设传热系数恒定,冷却液温度沿其流动路径线性变化。数值结果表明,由于与界面处吸收相关的独特热效应以及下游距离较小时壁上冷却剂的冷却效应,温度曲线呈指数形式且梯度高。随着下游距离的增加,温度曲线几乎呈线性。吸收热通量和质量通量在入口区域达到最大值,而在入口区域的外部减小。特别地,考虑和讨论了可变物理性质对吸收过程的影响。当假定特性恒定时,总吸收传质速率的预测高约6.5%。

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