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Experimental and numerical study on the regeneration performance of LiCl solution with surfactant and nanoparticles

机译:表面活性剂和纳米粒子对LiCl溶液再生性能的实验和数值研究

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The paper experimentally and numerically investigated the enhancement of LiCl falling film regeneration performance in a plate type regenerator by adding surfactant polyvinyl pyrrolidone (PVP) and multi-walled carbon nanotubes (MWNTs). Experimentally, by adding surfactant PVP and adopting mechanical methods, steady nanofluid containing MWNTs was successfully fabricated. The regeneration characteristics of LiCl/H2O solution, LiCl/H2O-PVP solution and LiCl/H2O-MWNTs nanofluid were identified quantitatively. Compared with the regeneration rate of the LiCl/H2O solution, the values of the LiCl/H2O-PVP solution and nanofluid are on average 24.9% and 24.7% greater. These enhancements can be attributed to the increase of mass transfer area and decrease of falling film thickness, which is caused by a decrease in contact angles. However, adding 0.1 wt% MWNTs to the LiCl/H2O-PVP solution has negligible influence on the regeneration rate. The three solutions have nearly the same mass transfer coefficients under comparable operating conditions. Theoretically, a mathematical model was built with the consideration of film contraction to describe the simultaneous heat and mass transfer processes in the regenerator. The calculated falling film wetting areas agree well with the measured ones, with a relative difference of less than 6%. The mean absolute relative deviation between the computational regeneration rates and experimental ones for the LiCl/H2O solution, LiCl/H2O-PVP solution and LiCl/H2O-MWNTs nanofluid are 9.01%, 3.95% and 4.22%, respectively, which demonstrates the accuracy of the developed model. The experimental data and newly developed numerical model are helpful for the study of regeneration enhancement and system design of liquid desiccant cooling systems.
机译:通过实验和数值研究,通过添加表面活性剂聚乙烯吡咯烷酮(PVP)和多壁碳纳米管(MWNT),增强了板式蓄热器中LiCl降膜再生性能。通过实验,通过添加表面活性剂PVP并采用机械方法,成功地制备了稳定的含MWNT纳米流体。定量鉴定了LiCl / H2O溶液,LiCl / H2O-PVP溶液和LiCl / H2O-MWNTs纳米流体的再生特性。与LiCl / H2O溶液的再生速率相比,LiCl / H2O-PVP溶液和纳米流体的值平均分别高24.9%和24.7%。这些增强可以归因于传质面积的增加和下降膜厚度的减小,这是由于接触角的减小引起的。但是,在LiCl / H2O-PVP溶液中添加0.1wt%的MWNT对再生速率的影响可以忽略不计。在可比的工作条件下,这三种解决方案的传质系数几乎相同。从理论上讲,建立了考虑薄膜收缩的数学模型,以描述再生器中同时进行的传热和传质过程。计算得出的降膜润湿面积与测得的润湿面积非常吻合,相对差异小于6%。 LiCl / H2O溶液,LiCl / H2O-PVP溶液和LiCl / H2O-MWNTs纳米流体的计算再生率与实验值之间的平均绝对相对偏差分别为9.01%,3.95%和4.22%,这表明开发的模型。实验数据和新开发的数值模型有助于研究液体干燥剂冷却系统的再生增强和系统设计。

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