首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >An experimental study on the stability and thermal conductivity of water-ethylene glycol/TiO2-MWCNTs hybrid nanofluid: Developing a new correlation
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An experimental study on the stability and thermal conductivity of water-ethylene glycol/TiO2-MWCNTs hybrid nanofluid: Developing a new correlation

机译:水 - 乙二醇/ TiO2-MWCNTS杂交纳米流体的稳定性和导热性的实验研究:培养新相关性

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The thermal conductivity of water-ethylene glycol/TiO2-MWCNT hybrid nanofluid was studied. The volume fraction of the nanoparticles and the fluids were 50:50. The nanofluid was prepared by suspending TiO2 nanoparticles-MWCNT in water-ethylene glycol using ultrasonic waves and addition of surfactants (CTAB). TiO2 nanoparticles with a diameter of 10 to 25 nm and MWCNT with a diameter of 20 to 30 nm were tested in different volume fractions of 0.05-1% and temperature range of 20-50 degrees C. Nanofluid stability was examined using the imaging method, as well as the DLS test. Results indicated the quality of the nanofluid. The thermal conductivity was measured using the KD2-Prob device using the hot wire method, and the results showed that increase in temperature and volume fraction increases the thermal conductivity of nanofluid. However, increased volume fraction was found to increase thermal conductivity more effectively that temperature. Results showed that the thermal conductivity of nanofluid can increase by a maximum of 38.7%. Finally, two mathematical models were proposed to estimate the thermal conductivity of the nanofluid. The results obtained from the proposed models are very consistent with laboratory data. (C) 2018 Elsevier B.V. All rights reserved.
机译:研究了水 - 乙二醇/ TiO2-MWCNT杂交纳米流体的导热率。纳米颗粒和流体的体积分数为50:50。通过使用超声波悬浮在水 - 乙二醇中的TiO2纳米颗粒-MWCNT和添加表面活性剂(CTAB)来制备纳米流体。在0.05-1%的不同体积分数中测试直径为10至25nm和直径为20至30nm的MwCnt的TiO2纳米颗粒在0.05-1%的不同体积分数中,使用成像方法检查纳米流体稳定性。以及DLS测试。结果表明纳米流体的质量。使用热线方法使用KD2-QUID装置测量导热率,结果表明,温度和体积分数的增加增加了纳米流体的导热率。然而,发现增加的体积分数可以更有效地提高导热性。结果表明,纳米流体的导热率最大可增加38.7%。最后,提出了两种数学模型来估计纳米流体的导热率。从拟议模型获得的结果与实验室数据非常一致。 (c)2018 Elsevier B.v.保留所有权利。

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