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Surfactant-Based Cu-Water Nanofluid Spray for Heat Transfer Enhancement of High Temperature Steel Surface

机译:基于表面活性剂的铜水纳米流体喷雾剂,用于增强高温钢表面的传热

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Spray cooling is critical in many industrial applications to extract large heat fluxes from metal parts, such as hypervapotron in nuclear fusion reactors, heat treatment of steel plates in run-out table (ROT), electronic parts, and many more. The objective of the present study is to enhance the heat dissipation in transition and nucleate boiling regimes using an air-atomized water spray with water-based copper nanofluid as a coolant. The nanoparticle used in this study is energetic metal Cu, which has been prepared by mechanical milling (MM) process. The nanofluid has been prepared by suspending 0.1 vol. % Cu nanoparticles in water, with or without a dispersing agent (surfactant). The effect of type of dispersing agent on augmentation of boiling heat transfer has also been studied. The spray cooling experiments are conducted on a 6 mm thick stainless steel plate of initial temperature above 900℃. The transient surface heat flux and temperatures are estimated using commercial inverse heat conduction software named intemp. The experimental results illustrated that transition and nucleate boiling heat flux as well as critical heat flux (CHF) increased significantly using nanofluid spray. A maximum ultrafast cooling (UFC) rate of 267℃/s is achieved using surfactant-based nanofluid spray, which is 31.53% and 59.88% higher as compared to the nanofluid without any dispersant and pure water sprays, respectively. Overall, the surfactant-based copper nanofluid spray can serve as a better coolant on the ROT of steel processing industry.
机译:在许多工业应用中,喷雾冷却对于从金属零件中提取大的热通量至关重要,例如核聚变反应堆中的超高压釜,在跳动台(ROT)中对钢板进行热处理,电子零件等等。本研究的目的是通过使用水基铜纳米流体作为冷却剂的空气雾化喷水来增强过渡和成核沸腾状态下的散热。这项研究中使用的纳米粒子是高能金属Cu,它是通过机械研磨(MM)工艺制备的。通过悬浮0.1vol。%的纳米流体来制备纳米流体。含或不含分散剂(表面活性剂)的水中的铜纳米颗粒百分比。还研究了分散剂类型对增加沸腾传热的影响。在初始温度高于900℃的6毫米厚不锈钢板上进行喷雾冷却实验。瞬态表面热通量和温度是使用名为intemp的商业反向导热软件估算的。实验结果表明,使用纳米流体喷雾可以显着提高相变和成核沸腾热通量以及临界热通量(CHF)。使用基于表面活性剂的纳米流体喷雾可达到267℃/ s的最大超快冷却(UFC)速度,与没有分散剂和纯水喷雾的纳米流体相比,分别高31.53%和59.88%。总体而言,基于表面活性剂的铜纳米流体喷雾剂可以在钢铁加工工业的ROT上用作更好的冷却剂。

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