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Pool boiling heat transfer on a nanoscale roughness-enhanced superhydrophilic surface for accelerated quenching in water

机译:纳米级粗糙度增强的超亲水性表面上的池沸腾传热,用于水中的加速淬火

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摘要

A superhydrophilic surface was prepared on stainless steel spheres by spray coating of silica nanopartides to enhance the surface roughness at the nanoscale. The quenching performance of such surface was tested in both saturated and subcooled water. It was shown that quenching is accelerated on the super hydrophilic surface by a factor of 60%, due to the marked boiling heat transfer enhancement with the critical heat flux being increased by 78%. Under saturated condition, the initial temperature of 800 degrees C is not high enough to lead to stable film boiling on the superhydrophilic surface. Instead, quenching begins with an extended transitional film boiling sub-regime that is dominated by point-contact mode of liquid-solid contacts. The quenching time becomes shorter with increasing the subcooling degree, in agreement with the enhancement in quasi-film-boiling heat transfer and CHF. Bubble jetting phenomenon is observed at the liquid-vapor interface for the subcooled cases, which becomes more violent at a deeper subcooling. The quenching performance maintains upon consecutive tests for up to 100 times, because the superhydrophilicity is sustained on the surface. The spray coating method adopted in this work is not only fast and cost-effective, but is also scalable to large and curved metallic surfaces for a variety of applications in thermal engineering including quenching. (C) 2016 Elsevier Ltd. All rights reserved.
机译:通过喷涂二氧化硅纳米粒子以提高纳米级的表面粗糙度,在不锈钢球上制备了超亲水表面。在饱和和过冷水中均测试了这种表面的淬火性能。结果表明,由于显着的沸腾传热增强,临界热通量增加了78%,超亲水性表面的淬灭速度加快了60%。在饱和条件下,800摄氏度的初始温度不足以导致在超亲水性表面上稳定的薄膜沸腾。相反,淬火从扩展的过渡膜沸腾子区域开始,该子区域主要由液-固接触的点接触模式控制。随着过冷度的增加,淬火时间变短,这与准薄膜沸腾传热和CHF的增强相一致。对于过冷的情况,在液-气界面处观察到气泡喷射现象,在更深的过冷情况下,气泡现象会更加剧烈。连续测试最多可维持100次淬火性能,因为表面具有超亲水性。这项工作中采用的喷涂方法不仅快速且经济高效,而且还可以扩展到大型和弯曲的金属表面,以用于包括淬火在内的热工程中的各种应用。 (C)2016 Elsevier Ltd.保留所有权利。

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