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CHF ENHANCEMENT OF POOL BOILING IN GRAPHENE OXIDE NANOFLUID WITH CHEMICAL REDUCTION

机译:富含石墨烯氧化物纳米流体的池中池中的CHF增强

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Graphene oxide (GO) can be deposited on a heater surface to produce nanoscale structures that enhance the thermal limit of the heater. GO has shown a very unique feature showing CHF enhancement without wettability improvement in terms of apparent advancing contact angle unlike any other typical nanoparticles. Many studies have analyzed the reason for the enhanced critical heat flux (CHF) of the heater. Three major models have been used for studying the enhanced CHF of the heater in many heat transfer studies: wettability of surface (contact angle), Rayleigh-Taylor instability wavelength, and thermal activity. In this study, scanning electron microscopy (SEM) images and the contact angle were taken to explain the enhanced wettability of a heater surface in a GO nanofluid. GO is composed of carbon and oxygen. This material has good affinity with water because of its polarity. In an electric field, GO reduces into reduced graphene oxide (RGO). This chemical reduction on the surface may be one factor that enhances the CHF. To examine how a GO nanofluid can enhance CHF to more than twice its original magnitude, a wettability model was applied that uses the contact angle of the nichrome wire heater surface after the CHF experiment. The reason why the wettability model could not completely account for the CHF enhancement in a GO nanofluid was also determined. The reduction of GO was considered to explain CHF enhancement.
机译:石墨烯氧化物(GO)可以沉积在加热器表面上,以产生增强加热器的热极限的纳米级结构。除了任何其他典型的纳米颗粒不同的情况下,还显示了一个非常独特的功能,显示出明显的推进接触角的湿度增强,而不改善。许多研究已经分析了加热器增强的临界热通量(CHF)的原因。三种主要模型已被用于研究许多传热研究中加热器的增强型CHF:表面(接触角),瑞利 - 泰勒不稳定波长和热活性的润湿性。在该研究中,考虑扫描电子显微镜(SEM)图像和接触角来解释去纳米流体中加热器表面的增强润湿性。去由碳和氧气组成。由于其极性,这种材料具有良好的水。在电场中,降至氧化石墨烯(RGO)中。表面上的这种化学降低可以是增强CHF的一个因素。为了检查Go anofluid如何增强CHF的原始幅度的两倍以上,应用了湿度模型,其使用了CHF实验之后的镍络线加热器表面的接触角。还确定了润湿性模型无法完全占GO纳米流体中CHF增强的原因。去的减少被认为是解释CHF增强。

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