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Effects of titania nanoparticles on heat transfer performance of spray cooling with full cone nozzle

机译:二氧化钛纳米颗粒对全锥喷嘴喷雾冷却换热性能的影响

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摘要

Spray cooling using aqueous titania nanofluids was studied. The temperatures of a testing plate under various spraying conditions were first measured; an inverse heat conduction technique was then applied to convert these measured temperatures into heat transfer coefficients (HTCs). It was found that the HTC increased logarithmically with the volume flux, but was decreased with the increase of the nanoparticle fraction. A correlation analysis was performed to quantify the HTC reduction caused by the increase of nanoparticles, and reconfirmed that the major cause for the HTC reduction was the difference in the impact (or impingement) behavior between solid nanoparticles and fluid droplets. A comparison study of the present findings with the previous published results was also performed and indicated that all results compared were consistent to each other based on the similar spray cooling conditions with different nanofluids or nozzles. The effects by using aquatic titania nanofluids instead of aquatic alumina nano-fluids and by using full-cone nozzle instead of solid jet nozzle were specifically assessed and the associated rationales for the differences in these effects were given.
机译:研究了使用二氧化钛纳米流体的喷雾冷却。首先测量在各种喷涂条件下测试板的温度;然后应用逆导热技术将这些测得的温度转换成热传递系数(HTC)。发现HTC随体积通量对数增加,但随纳米颗粒分数的增加而减少。进行了相关分析以量化由纳米颗粒增加引起的HTC降低,并再次确认HTC降低的主要原因是固体纳米颗粒和液滴之间的撞击(或撞击)行为不同。还进行了本研究结果与以前发表的结果的比较研究,结果表明,基于相似的喷雾冷却条件和不同的纳米流体或喷嘴,所有比较的结果彼此一致。特别评估了使用水合二氧化钛纳米流体代替水合氧化铝纳米流体以及使用全锥喷嘴代替固体喷射喷嘴的效果,并给出了这些效果差异的相关理由。

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