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首页> 外文期刊>Journal of Applied Physics >The interface effect of carbon nanotube suspension on the thermal performance of a two-phase closed thermosyphon
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The interface effect of carbon nanotube suspension on the thermal performance of a two-phase closed thermosyphon

机译:碳纳米管悬浮液对两相封闭热虹吸管热性能的界面效应

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An aqueous solution of carbon nanotubes, treated by a concentrated nitric/sulfuric acid mixture to disentangle the nanotubes, was utilized as the working medium in a two-phase closed thermosyphon to investigate its performance. In comparison with the thermosyphon filled with a distilled water medium, the one filled with carbon nanotube suspension has a high evaporation section wall temperature, incipience temperature, and excursion, as well as thermal resistance. The carbon nantotubes' nanofluid deteriorates the performance of the gravity-assisted heat pipe. Measurements employing the maximum bubble pressure method demonstrate that suspending carbon nanotubes in bulk water gives rise to increased surface tension. In addition, the contact angle of suspension obtained with the sessile drop method on a copper plate is much smaller than that of water. Alterations of solid-liquid-vapor interfacial properties, arising from the addition of carbon nanotubes, change the boiling mechanism and thus deteriorate the boiling heat transfer.
机译:将碳纳米管的水溶液经浓硝酸/硫酸混合物处理以解开纳米管,将其用作两相封闭热虹吸管中的工作介质,以研究其性能。与填充有蒸馏水介质的热虹吸管相比,填充有碳纳米管悬浮液的热虹吸管的蒸发截面壁温度,起始温度和偏移高,并且具有耐热性。碳纳米管的纳米流体会降低重力辅助热管的性能。使用最大气泡压力法的测量表明,将碳纳米管悬浮在散装水中会导致表面张力增加。另外,通过固着滴法获得的悬浮液在铜板上的接触角比水小得多。由碳纳米管的添加引起的固-液-汽界面性质的改变,改变了沸腾机理,从而恶化了沸腾传热。

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