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Effect of SiO2 super-hydrophobic coating and self-rewetting fluid on two phase closed thermosyphon heat transfer characteristics: An experimental and numerical study

机译:SiO2超级疏水涂层和自重湿润流体对两相封闭热循环传热特性的影响:实验性和数值研究

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The realization of the importance of high-performance heat transfer units, in this case a two-phase closed thermosyphon (TPCT), has gained a foothold in recent years. To this end, the super-hydrophobic coating has been applied in the TPCT condenser surface and 1-Butanol is added as a self-rewetting aqueous solution in the working fluid. The super-hydrophobic coating has been created by using surface engineering and synthesis super-hydrophobic SiO2 nanoparticles. In this work, in a bid to measure some well-established parameters (heat input, filling ratio, and coolant mass flow rate) which are capable of getting thermal efficiency and resistance surging toward desirable numbers, experimentally considered TPCT implement. In order to illustrate boiling and condensation phenomena, the numerically simulation have been conducted assists by volume of fluid (VOF) multiphase model and user-define function (UDF) house code. Results indicate that in the heat input of 250 watts, the condenser convective heat transfer coefficient of TPCT with super-hydrophobic coating is 13.34% higher than the TPCT with non-modified condenser. Also, increasing heat input, filling ratio and 1-Butanol mass concentration decreases the TPCT thermal resistance opposite of the coolant mass flow rate. The numerical simulation illustrates that the boiling in a TPCT with 1-Butanol-water working fluid has occurred faster than TPCT with water working fluid. Also, the condensation has been appeared droplet due to high contact angle in the condenser with super-hydrophobic coating. (C) 2020 Elsevier B.V. All rights reserved.
机译:实现高性能传热单元的重要性,在这种情况下,近年来已经获得了两相封闭的热循环(TPCT)。为此,在TPCT冷凝器表面中施加超疏水涂层,并在工作流体中加入1-丁醇作为自重重新润湿水溶液。通过使用表面工程和合成超级疏水性SiO2纳米颗粒来产生超疏水涂层。在这项工作中,在衡量一些能够获得热效率和阻力朝向所需数量的熟悉的参数(热输入,填充比和冷却剂质量流量),实验考虑了TPCT工具。为了说明沸腾和冷凝现象,已经通过体积的流体(VOF)多相模型和用户定义函数(UDF)房间代码进行了数量的辅助。结果表明,在250瓦的热量输入中,具有超疏水涂层的TPCT的冷凝器对流传热系数比具有未改性冷凝器的TPCT高13.34%。而且,增加热输入,填充率和1-丁醇质量浓度降低了与冷却剂质量流量相反的TPCT热阻。数值模拟说明,具有1-丁醇 - 水工作流体的TPCT中的沸点比与水工作流体的TPCT发生得更快。而且,由于具有超级疏水涂层的冷凝器中的高接触角,所曝光已经出现了冷凝。 (c)2020 Elsevier B.v.保留所有权利。

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