首页> 外文会议>ASME Fluids Engineering Division Meeting;ASME Heat Transfer Conference;International Conference on Nanochannels, Microchannels and Minichannels >EVAPORATION OF SILVER-GRAPHENE HYBRID NANOFLUID DROPLET ON ITS NANOSTRUCTURED RESIDUE AND PLAIN COPPER SURFACES AT ELEVATED TEMPERATURES
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EVAPORATION OF SILVER-GRAPHENE HYBRID NANOFLUID DROPLET ON ITS NANOSTRUCTURED RESIDUE AND PLAIN COPPER SURFACES AT ELEVATED TEMPERATURES

机译:升高温度下纳米结构残余物中银 - 石墨烯杂交纳米流体液滴的蒸发

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Droplet evaporation is an efficient process as it removes a large amount of heat by using the latent energy, making it suitable for heat transfer applications. In this research, evaporation of the silver-graphene hybrid nanofluid (SGHF) droplet, because of its synergistic thermal conductivity, is investigated for substrate temperature in a range of 25-100 °C. The experiments for droplet evaporation were performed in an environmental facility for two droplet sizes. 3 μL and 30 μL volume, on a copper plate. A 100 W silicone heater mat was used to heat the copper plate from the underside, while two T-type thermocouples were used to monitor its surface temperature. As droplet evaporation ended, a porous residue was formed on the copper surface. Subsequently, a 3 μL volume of the SGHF droplet was dispensed on the porous residue surface. The results showed a tremendous rise in the evaporation rate (up to 160%) for the subsequent SGHF droplet sitting on the porous residue as compared to the non-wetted copper surface. Moreover, the evaporation rate of the SGHF droplet on the copper surface increased up to 56% as compared to the water droplet for a substrate temperature range of 25-100 °C.
机译:液滴蒸发是一种有效的过程,因为它通过使用潜在能量去除大量的热量,这使得适用于传热应用。在该研究中,蒸发银 - 石墨烯杂交纳米流体(SGHF)液滴,由于其协同导热率,用于底物温度在25-100℃的范围内。在两个液滴尺寸的环境设施中进行液滴蒸发的实验。在铜板上的3μl和30μl体积。 100W硅胶加热器垫用于从下侧加热铜板,而两个T型热电偶用于监测其表面温度。由于液滴蒸发结束,在铜表面上形成多孔残留物。随后,在多孔残留物表面上分配3μL体积的SGHF液滴。与非湿润的铜表面相比,结果表明随后的SGHF液滴的蒸发速率(高达160%)的巨大上升。此外,与25-100℃的基板温度范围的水滴相比,铜表面上的SGHF液滴的蒸发速率增加到56%。

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