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ALUMINA NANOFLUID FOR SPRAY COOLING ENHANCEMENT

机译:用于喷涂冷却的氧化铝纳米粉

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摘要

Nanofluids have been demonstrated as promising for heat transfer enhancement in forced convection and boiling applications. The addition of carbon, copper, and other high-thermal-conductivity nanoparticles to water, oil, ethylene glycol, and other fluids has been determined to increase the thermal conductivities of these fluids. The increased effective thermal conductivities of these fluids enhance their abilities to dissipate heat in such applications. The use of nanofluids for spray cooling is an extension of the application of nanofluids for enhancement of heat dissipation. In this investigation, experiments were performed to determine the level of heat transfer enhancement with the addition of alumina nanoparticles to the fluid. Using mass percentages of up to 0.5% alumina nanoparticles suspended in water, heat fluxes and surface temperatures were measured and compared. Compressed nitrogen was used to provide constant spray nozzle pressures to produce full-cone sprays in an open loop spray cooling system. Heat fluxes were measured for single-phase and evaporative spray cooling regimes.
机译:纳米流体已被证明有希望在强制对流和沸腾应用中增强传热。已确定将碳,铜和其他高导热性纳米粒子添加到水,油,乙二醇和其他流体中,以增加这些流体的导热率。这些流体的有效导热率提高,从而增强了它们在此类应用中的散热能力。将纳米流体用于喷雾冷却是纳米流体用于增强散热的应用的扩展。在这项研究中,进行了实验以确定在流体中添加氧化铝纳米粒子后传热增强的水平。使用悬浮在水中的质量百分比高达0.5%的氧化铝纳米颗粒,测量并比较了热通量和表面温度。压缩氮气用于提供恒定的喷嘴压力,以在开环喷雾冷却系统中产生全锥状喷雾。测量了单相和蒸发喷雾冷却方式的热通量。

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