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ANALYSIS OF NANOFLUIDS IN LIQUID ELECTRONIC COOLING SYSTEMS

机译:液体电子冷却系统中的纳米流体分析

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Nanofluids are solutions of a small fraction of suspended nanoparticles in a bulk fluid. Nanofluids have shown great promise as heat transfer fluids over typically used bulk fluids and fluids with micron sized particles. The nanoparticles do not settle in the fluid and do not cause clogging or damage to surfaces as with micron sized particles. In the current work we compare the performance of different volume loadings of water-based alumina nanofluids in a commercially available electronics cooling system to that of pure Dl-water. The commercially available system is a water block used for liquid cooling of a computational processing unit. The size of the nanoparticles in the study is varied from 20 nm to 30 nm. Results show an enhancement in convective heat transfer, but not in the temperature increase through a heated tube or commercial cooling system in nanofluids with volume loadings of nanoparticles up to 2% by volume. The current nanofluids showed significant settling within an hour of preparation.
机译:纳米流体是散装流体中一小部分悬浮纳米颗粒的溶液。纳米流体作为传热流体比通常使用的散装流体和具有微米级颗粒的流体具有广阔的前景。纳米粒子不会沉淀在流体中,不会像微米级粒子那样造成表面堵塞或损坏。在当前的工作中,我们比较了市售电子冷却系统中不同体积负载的水性氧化铝纳米流体与纯去离子水的性能。市售系统是用于计算处理单元的液体冷却的水冷器。研究中纳米颗粒的大小从20 nm到30 nm不等。结果显示,在纳米流体中,通过加热管或商用冷却系统的对流传热得到了增强,但纳米流体的体积加载量高达2%(按体积计),温度没有增加。当前的纳米流体在制备后的一个小时内显示出明显的沉降。

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