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首页> 外文期刊>International Journal of Refrigeration >Numerical and experimental study of absorption of H2O vapor in wavy falling film of LiBr aqueous solution in vertical tubes and in presence of non-absorbables
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Numerical and experimental study of absorption of H2O vapor in wavy falling film of LiBr aqueous solution in vertical tubes and in presence of non-absorbables

机译:垂直管中Libs水溶液波浪水溶液中H2O蒸汽吸收的数值和实验研究及不吸收

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摘要

One of the main reasons for the discrepancies between theoretical predictions of absorption phenomena made by mathematical models when they are compared against experimental results under real conditions, are the presence of non-absorbable gases. It is well known that these non-absorbable gases inside the shell of the absorption chiller are produced mainly for two reasons: (i) air leakages (Oxygen-Nitrogen); (ii) gases produced by corrosion (Hydrogen). In order to evaluate the influence of the presence of non-absorbable gases, an experimental set-up which reproduces vapor absorption in a vertical falling film has been designed and built with a mass spectrometer analyzer. Parallelly, a mathematical model of falling film absorption of H2O by LiBr aqueous solution that considers the influence of non-absorbable gases has been implemented. The model is semi-empirical, based on Navier-Stokes equations together with energy and mass species simplified under the boundary layer hypotheses. Several experimental tests have been performed to determine the influence of the air concentration in the absorption performance. Moreover, a comparison of numerical results against experimental data has been performed under different working conditions with reasonable agreement. (C) 2019 Elsevier Ltd and IIR. All rights reserved.
机译:数学模型在实际条件下与实验结果进行比较时,数学模型对吸收现象的理论预测差异的主要原因之一。存在不可吸收的气体。众所周知,这些不可吸收的气体内部的吸收冷却器内部主要是由于两个原因产生的:(i)空气泄漏(氧气 - 氮); (ii)通过腐蚀(氢)产生的气体。为了评估不可吸收气体的存在的影响,使用质谱仪分析仪设计和构建了一种在垂直落膜中再现蒸汽吸收的实验组。并行地,实施了考虑不可吸收气体影响的LIBL水溶液的LiBl水溶液的薄膜吸收的数学模型。该模型是半经验的,基于Navier-Stokes方程以及在边界层假设下简化的能量和质量物种。已经进行了几种实验测试以确定空气浓度在吸收性能中的影响。此外,在具有合理协议的不同工作条件下进行了对实验数据的数值结果的比较。 (c)2019年Elsevier Ltd和IIR。版权所有。

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