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Thermal performance of an oscillating heat pipe with Al_2O_3-water nanofluids

机译:Al_2O_3-水纳米流体的振荡热管的热性能

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An experimental investigation was performed on the thermal performance of an oscillating heat pipe (OHP) charged with base water and spherical Al_2O_3 particles of 56 nm in diameter. The effects of filling ratios, mass fractions of alumina particles, and power inputs on the total thermal resistance of the OHP were investigated. Experimental results showed that the alumina nanofluids significantly improved the thermal performance of the OHP, with an optimal mass fraction of 0.9 wt.% for maximal heat transfer enhancement. Compared with pure water, the maximal thermal resistance was decreased by 0.14 ℃/W (or 32.5%) when the power input was 58.8 W at 70% filling ratio and 0.9% mass fraction. By examining the inner wall samples, it was found that the nanoparticle settlement mainly took place at the evaporator. The change of surface condition at the evaporator due to nanoparticle settlement was found to be the major reason for the enhanced thermal performance of the alumina nanofluid-charged OHP.
机译:对装有基水和直径为56 nm的球形Al_2O_3颗粒的振荡热管(OHP)的热性能进行了实验研究。研究了填充率,氧化铝颗粒的质量分数和功率输入对OHP总热阻的影响。实验结果表明,氧化铝纳米流体显着改善了OHP的热性能,最佳质量分数为0.9 wt。%,可最大程度地提高热传递。当输入功率为58.8 W(填充比为70%,质量分数为0.9%)时,与纯水相比,最大热阻降低了0.14℃/ W(或32.5%)。通过检查内壁样品,发现纳米颗粒沉降主要发生在蒸发器上。发现由于纳米颗粒沉降而导致的蒸发器表面条件的变化是氧化铝纳米流体带电OHP增强热性能的主要原因。

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