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Performance Evaluation When Using Nanofluids in Loop Heat Pipe and Pulsating Heat Pipe

机译:在环热管和脉动热管中使用纳米流体时的性能评估

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This paper presents an experimental investigation regarding the use of solid nanoparticles added to water as a working fluid, to form a so-called nanofluid. Tests were made with a miniature loop heat pipe (mLHP) and an open loop pulsating heat pipe (OLPHP). Results show that the addition of 3.5% (by mass) of nickel nanoparticles in water presented improvement on the mLHP thermal performance at heat loads around 10 W when compared with the operation with pure water. However, when operating at higher heat loads, the mLHP presented worse performance. When operating the mLHP and nanofluid with a concentration of 5% (by mass) of nickel nanoparticles, the device did not show reliable operation. The OLPHP was tested with water and copper nanoparticles at a concentration of 5% (by mass). When testing the OLPHP under several orientations and comparing to its operation with pure water, the nanofluid presented to initialize the more intensive pulsation behavior at lower heat loads when compared with operation with pure water, also presenting operation at lower evaporator temperatures. Such characteristics could be directly related to the use of solid nanoparticles that increase the liquid thermal conductivity. The use of nanofluids presents to be more beneficial to the OLPHP than to the mLHP, as the first one does not present a wick structure.
机译:本文介绍了将固体纳米颗粒用作水作为工作流体的实验研究,以形成所谓的纳米流体。用微型环热管(MLHP)和开环脉动热管(OLPH)进行测试。结果表明,与用纯水的操作相比,在热负荷下,在水中的镍纳米颗粒中添加3.5%(质量)的镍纳米颗粒在加热载荷上提高。但是,在更高的热负荷下运行时,MLHP呈现更差的性能。当使用浓度为5%(质量)的镍纳米粒子的MLHP和纳米流体时,该装置没有显示可靠的操作。用水和铜纳米颗粒以5%(质量)的浓度测试OLPH。当在多个方向下测试OLPHP并与其用纯水进行比较时,纳米流体在与用纯水的操作相比时呈现在较低的热负荷下更加强烈的脉动行为,并且在较低蒸发器温度下呈现操作。这些特性可以与使用增加液体导热率的固体纳米颗粒直接相关。使用纳米流体的使用呈对OLPH比MLHP更有益,因为第一个不呈现芯结构。

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