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首页> 外文期刊>International Journal of Refrigeration >Experimental study on heat and mass transfer performance of falling film absorption over a vertical tube using LiCl solution
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Experimental study on heat and mass transfer performance of falling film absorption over a vertical tube using LiCl solution

机译:LICL溶液在垂直管上垂直膜吸收的热和传质性能的实验研究

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Highlights?Falling film absorption into LiCl solution was experimentally studied.?Heat and mass transfer performance at different operations was disclosed.?Effect of falling-film type absorber using different solutions was compared.?Formulations of heat and mass transfer coefficients were correlated.AbstractTo discover the falling film absorption performance over a vertical tube using LiCl solution in a high-pressure absorber involved in a two-stage absorption refrigeration system, an experimental study on heat and mass transfer performance of the absorption process was conducted. Effects of operating parameters such as solution mass flow rate, absorber pressure, concentration and cooling water temperature on absorber performance are analyzed. Besides, a coupled heat and mass transfer model is applied and solved with a finite difference method in order to determine the heat and mass transfer coefficients. Mass absorption rates of absorption processes respectively using LiBr solution and LiCl solution are compared under the conditions of the same temperature and saturated vapor pressure of the solution. Results show that the mass absorption rate using LiCl solution is up to 19.7% higher than LiBr solution. In addition, dimensionless formulations of heat and mass transfer coefficients are correlated with the average absolute error below 15%. The study is also helpful to design and optimize such kind of absorbers using LiCl solution as working fluid.]]>
机译:<![cdata [ 亮点 实验研究了LICL解决方案的下降薄膜吸收。 在不同操作时的热量和传质性能是披露。 热量和传质系数的配方ere相关。 抽象 在实验研究中使用LICL溶液在涉及的高压吸收器中使用LICL解决方案来发现垂直管上的薄膜吸收性能下降对吸收过程的热量和传质性能进行了热量和传质。分析了溶液质量流速,吸收压力,浓度和冷却水温度的操作参数的影响。此外,用有限差分法施加耦合的热量和传质模型,以确定热量和传质系数。在溶液的相同温度和饱和蒸气压的条件下比较使用LIBR溶液和LiCl溶液的质量吸收率。结果表明,使用LICL溶液的质量吸收率高于LIBL溶液高达19.7%。此外,无量纲配方的热量和传质系数与低于15%的平均绝对误差相关。该研究还有助于使用LICL解决方案设计和优化这种吸收器作为工作流体。 ]]>

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