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Stabilization and characterization of a nanofluid based on a eutectic mixture of diphenyl and diphenyl oxide and carbon nanoparticles under high temperature conditions

机译:在高温条件下基于二苯基和二苯醚与碳纳米颗粒的低共熔混合物的纳米流体的稳定和表征

摘要

(C12H10O), and it is used as an HTF with a maximum working temperature of 400 °C. However, one of the drawbacks of Therminol VP1 is its low thermal conductivity. In recent years it has been demonstrated that the addition of nanoparticles can improve the thermal properties of HTFs, and they are then called nanofluids. The key factor of nanofluids is their high stability over time. However, at high temperatures it is necessary to add chemically compatible surfactants that do not degrade and endow the nanofluids with stability through steric repulsion even under high temperature conditions. In this work, a carbon black/Therminol VP1 nanofluid was synthesized and stabilized using diphenyl sulfone as a stabilizer. Stability tests after thermal cycling at 400 °C showed the higher performance of this additive compared to others commonly used in the literature. Thermal conductivity, heat capacity, and viscosity of the nanofluids at 3 vol% and 5 vol% were characterized from 50 °C to 350 °C. Finally, the Mouromsteff number was calculated to determine the heat transfer enhancement provided by the use of nanofluids.
机译:(C12H10O),它用作HTF,最高工作温度为400°C。但是,Therminol VP1的缺点之一是导热系数低。近年来,已证明添加纳米颗粒可以改善HTF的热性能,因此它们被称为纳米流体。纳米流体的关键因素是其随时间的高稳定性。然而,在高温下,有必要添加化学相容的表面活性剂,即使在高温条件下,该表面活性剂也不会通过空间排斥而降解并使纳米流体具有稳定性。在这项工作中,使用二苯砜作为稳定剂合成并稳定了炭黑/ Therminol VP1纳米流体。与文献中常用的其他添加剂相比,在400°C的热循环后的稳定性测试表明该添加剂的性能更高。在50℃至350℃下表征了3vol%和5vol%的纳米流体的导热率,热容量和粘度。最终,计算出了Mouromsteff数以确定使用纳米流体所提供的传热增强。

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