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Thermal Conductivity of and Magnetic Nanofluids Under the Influence of Magnetic Field

机译:磁场作用下纳米碳纳米管与磁性纳米流体的热导率

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In this paper, the thermal conductivity of water-based hematite and magnetite nanofluids have been investigated in the absence and presence of a uniform magnetic field. The experiments have been performed in the volume concentration range of 0 % to 4.8 % and the temperature range of to . The effects of the particle volume fraction, temperature, and magnetic field strength on the thermal conductivity have been analyzed. Results show that the thermal conductivity of iron oxide nanofluids has a direct relation with the particle volume fraction and temperature, without the presence of a magnetic field. But surprisingly, when the magnetic field is applied, it is observed that the thermal conductivity decreases with increasing temperature and it is also higher for a magnetite nanofluid than for a hematite nanofluid. Moreover, changes in the strength of the magnetic field cause the thermal-conductivity ratio of the ferrofluid with respect to pure water to increase from 15 % to 38.5 % and from 13 % to 175 % for magnetite and hematite nanofluids, respectively. Based on the obtained experimental results, a correlation has been developed for the thermal conductivity of iron oxide magnetic nanofluids as a function of the volume fraction, temperature, and magnetic field strength.
机译:在本文中,研究了在不存在和存在均匀磁场的情况下水基赤铁矿和磁铁矿纳米流体的热导率。实验是在0%至4.8%的体积浓度范围和温度范围内进行的。分析了颗粒体积分数,温度和磁场强度对热导率的影响。结果表明,在不存在磁场的情况下,氧化铁纳米流体的热导率与颗粒体积分数和温度有直接关系。但是令人惊讶的是,当施加磁场时,观察到导热率随温度升高而降低,并且磁铁矿纳米流体的导热系数也比赤铁矿纳米流体的导热系数更高。此外,磁场强度的变化导致铁磁流体相对于纯水的热导率对于磁铁矿和赤铁矿纳米流体分别从15%增加到38.5%,从13%增加到175%。基于获得的实验结果,已经开发出氧化铁磁性纳米流体的导热率与体积分数,温度和磁场强度的函数的关系。

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