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Preparation, Stability and Thermal Characteristic of Al2O3/Bio-Oil Based Nanofluids for Heat Transfer Applications

机译:Al2O3 / Bio油基纳米流体用于传热应用的制备,稳定性和热特性

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摘要

Conventional thermal fluids with suspended nanoparticles, known as nanofluids, have been developed for heat transfer applications. Heat transfer loss could be reduced significantly if the thermophysical properties of the heat transfer fluid are improved, which to some extent, could reduce the present global environmental challenges associated with energy utilization, such as climate change and global warming. In this work, the role of the concentration of sodium dodecyl-benzene sulfonate (SOBS) in the stability of Al2O3/bio-oil nanofluid is investigated the zeta potential value, and its implications to the viscosity and thermal conductivity of the nanofluid are explored. The bio-oil based nanofluid is fixed using a two-step method in which the prepared base fluid is added with 13-nm alumina nanoparticles powder. Various weight fractions of SOBS (0.1, 0.2, 0.4, 0.6, and 1.0 wt%) are used for both 0.1 and 0.2 wt% Al2O3 to investigate the significance of the stability of a nanofluid on its thermal conductivity and viscosity. Results indicate that a stable nanofluid has reduced viscosity and increased thermal conductivity.
机译:已经开发出具有悬浮纳米颗粒的常规热流体,已成为纳米流体,用于传热应用。如果传热流体的热理性质得到改善,可以显着降低传热损失,这在一定程度上可以减少与能源利用相关的全球环境挑战,例如气候变化和全球变暖。在这项工作中,研究了十二烷基 - 苯磺酸钠(SOB)浓度在Al 2 O 3 / Bio-油纳米流体的稳定性中的作用,探讨了Zeta电位值,并探讨了纳米流体的粘度和导热率的影响。使用两步法固定生物油基纳米流体,其中制备的基础流体加入13nm氧化铝纳米粒子粉末。 SOBs(0.1,0.2,0.4,0.6和1.0wt%)的各种重量级分用于0.1和0.2wt%的Al 2 O 3,以研究纳米流体稳定性对其导热性和粘度的显着性。结果表明,稳定的纳米流体具有降低的粘度和导热性增加。

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