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A realistic approach to model LiBr-H_2O smooth falling film absorption on a vertical tube

机译:在垂直管上模拟LiBr-H_2O平滑降膜吸收的现实方法

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摘要

A detailed model is developed for treating the 2-D water vapour absorption into an aqueous solution of LiBr, which is flowing over a vertical tube. Numerical predictions are presented for the spatial variation of solution temperature and concentration in the axial direction and within the LiBr-H_2O falling film taking into account the flow and temperature rise of coolant inside the tube. Special care was given to the adequate description of the thermodynamic properties of superheated water vapour, which is treated as a real gas. Emphasis was also given in demonstrating the electrolytic nature of the aqueous solution, introducing thus the effect of variable heat of absorption on the temperature field. A parametric study for examining the effect of absorption pressure, solution mass flow rate and inlet coolant temperature on the absorption process was carried out implementing the model under laminar flow conditions. A good coincidence with experimental observations obtained for solution flows with Re < 150 was witnessed, acknowledging thus the predictive capability of the numerical model.
机译:开发了用于处理二维水蒸气吸收到LiBr水溶液中的详细模型,该水在垂直管中流动。考虑到管内冷却剂的流量和温升,给出了轴向和LiBr-H_2O降膜内溶液温度和浓度的空间变化的数值预测。要特别注意对过热蒸汽的热力学性质的适当描述,过热蒸汽被视为真实气体。还强调了水溶液的电解性质,因此引入了可变吸收热对温度场的影响。在层流条件下实施该模型,进行了参数研究,以研究吸收压力,溶液质量流量和入口冷却剂温度对吸收过程的影响。观察到与Re <150的固溶流的实验观察结果非常吻合,从而确认了数值模型的预测能力。

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