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Study of the effect of particles size and volume fraction concentration on the thermal conductivity and thermal diffusivity of Al2O3 nanofluids

机译:颗粒尺寸和体积分数浓度对Al2O3纳米流体导热系数和热扩散系数的影响研究

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In this study we present new data for the thermal conductivity enhancement in four nanofluids containing 11, 25, 50, and 63 nm diameter Aluminum oxide (Al2O3) nanoparticles in distilled water. The nanofluids were prepared using single step method (that is, by dispersing nanoparticle directly in base fluid) which was gathered in ultrasonic device for approximately 7 h. The transient hot-wire laser beam displacement technique was used to measure the thermal conductivity and thermal diffusivity of the prepared nanofluids. The thermal conductivity and thermal diffusivity were obtained by fitting the experimental data to the numerical data simulated for Al2O3in distilled water. The results show that, the thermal conductivity and thermal diffusivity enhancement of nanofluids increases as the particle size increases. Thermal conductivity and thermal diffusivity enhancement of Al2O3nanofluids was increase as the volume fraction concentration increases. This enhancement attributed to the many factors such as, ballistic energy, nature of heat transport in nanoparticle, and interfacial layer between solid/fluids.
机译:在这项研究中,我们为蒸馏水中的四种纳米流体(包含11、25、50和63 nm直径的氧化铝(Al2O3)纳米颗粒)的导热系数提高提供了新数据。使用单步法(即通过将纳米颗粒直接分散在基础流体中)制备纳米流体,将其收集在超声装置中约7小时。瞬态热丝激光束位移技术用于测量制备的纳米流体的热导率和热扩散率。通过将实验数据与蒸馏水中Al2O3的数值数据进行拟合,可获得导热系数和热扩散系数。结果表明,纳米流体的热导率和热扩散率的提高随着粒径的增加而增加。随着体积分数浓度的增加,Al2O3纳米流体的热导率和热扩散率提高。这种增强归因于许多因素,例如弹道能量,纳米颗粒中热传递的性质以及固体/流体之间的界面层。

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