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New experimental correlation for the thermal conductivity of MWCNTs-SiO2/water-EG in various solid volume fractions and temperatures

机译:MWCNTS-SiO2 /水的导热率的新实验相关性 - 例如各种固体体积分数和温度

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摘要

In recent years, studies on rheological behavior and heat transfer of nanofluids have been greatly increased and results show significant progress in this field. In this study, thermal conductivity of nanofluid consisting of SiO2 and MWCNTs suspended in water and ethylene glycol as the base fluid was experimentally studied. Using nanofluid in energy systems is going to spread more day after day, therefore, measuring its properties has significant importance. To do so 50:50 mass fraction of SiO2 and MWCNTs nanoparticles has been dispersed in water and ethylene glycol (60-40) with various solid volume fractions (0.0625%, 0.125%, 0.25%, 0.5%, 0.75% and 1%) in different temperatures from 25 to 50 degrees C. Nanoparticles were suspended in base fluid using the two-stage method. Results suggest that the thermal conductivity of nanofluid is higher than the base fluid and the changes have a direct relation with increase or decrease of solid volume fraction and temperature. The highest increase in thermal conductivity occurred in solid volume fraction of 1% in a temperature between 25 and 50 degrees C amounting 13.1% and in a temperature of 50 degrees C and solid volume fraction between 0 and 1% was 29.8%. Eventually, a relation provided based on solid volume fraction and temperature. Margin of deviation in this relation is less than 1.9% that demonstrated the good accuracy.
机译:近年来,对纳米流体的流变行为和热传递的研究得到了大大增加,结果表明了该领域的显着进展。在该研究中,通过实验研究了由悬浮在水和乙二醇中悬浮在水和乙二醇中的SiO 2和MWCNT的纳米流体的热导率。在能量系统中使用纳米流体将在日复一日的时间蔓延,因此,测量其性质具有重要意义。这样做,50:50的SiO 2和MWCNT纳米颗粒已经分散在水和乙二醇(60-40)中,具有各种固体体积级分(0.0625%,0.125%,0.25%,0.5%,0.75%和1%)在不同温度下,使用两阶段方法将纳米颗粒悬浮在基础液中。结果表明,纳米流体的导热率高于基础流体,并且随着固体体积分数和温度的增加,变化具有直接关系。在25至50℃的温度下,在50℃的温度下,在50℃的温度下,在50℃的温度下的最高增加,在50℃的温度下,0至1%的固体级分为29.8%。最终,基于固体体积分数和温度提供的关系。这一关系的偏差幅度小于1.9%,表明了良好的准确性。

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