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首页> 外文期刊>International Journal of Thermal Sciences >Thermal performance comparison of oscillating heat pipes with SiO_2/water and Al_2O_3/water nanofluids
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Thermal performance comparison of oscillating heat pipes with SiO_2/water and Al_2O_3/water nanofluids

机译:SiO_2 /水和Al_2O_3 /水纳米流体的振荡热管的热性能比较

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摘要

Thermal performances of two same oscillating heat pipes (OHPs) charged with SiO_2/water and Al_2O_3/water nanofluids, respectively, were investigated experimentally. Both the average evaporator wall temperature and the overall thermal resistance of the OHPs at different nanoparticle mass concentrations (0-0.6 wt% for silica nanofluids and 0-1.2 wt% for alumina nanofluids) and at the volume filling ratio of 50% were tested and compared. Experimental results showed that different nanofluids caused different thermal performances of OHPs. Within the experimental range, using the alumina nanofluid instead of pure water enhanced the heat transfer of the OHP (reductions in the evaporator wall temperature and thermal resistance of the OHP of about 5.6℃ (or 8.7%) and 0.057℃/W (or 25.7%), respectively, were obtained), while using the silica nanofluid instead of pure water deteriorated the thermal performance of the OHPs (with the evaporator wall temperature and the thermal resistance of the OHP being increased by 3.5℃ (or 5.5%) and 0.075℃/W (or 23.7%), respectively). A preliminary analysis was conducted for the different effects induced by the addition of different nanoparticles to pure water, and it was found that the change of surface condition at the evaporator and condenser due to different nanoparticle deposition behaviors was the main reason for the thermal performance improvement or deterioration of the OHPs charged with different nanofluids.
机译:实验研究了两个分别装有SiO_2 /水和Al_2O_3 /水纳米流体的相同振荡热管(OHP)的热性能。测试了在不同纳米颗粒质量浓度(二氧化硅纳米流体为0-0.6 wt%,氧化铝纳米流体为0-1.2 wt%)以及体积填充率为50%时,OHP的平均蒸发器壁温和总热阻,并比较。实验结果表明,不同的纳米流体会引起OHP的不同热性能。在实验范围内,使用氧化铝纳米流体代替纯水可增强OHP的热传递(蒸发器壁温和OHP的热阻降低约5.6℃(或8.7%)和0.057℃/ W(或25.7)当使用二氧化硅纳米流体代替纯水时,OHP的热性能下降(蒸发器壁温和OHP的热阻分别提高了3.5℃(或5.5%)和0.075) ℃/ W(或23.7%))。初步分析了在纯水中添加不同的纳米粒子所引起的不同影响,发现由于纳米粒子沉积行为的不同,蒸发器和冷凝器表面条件的变化是热性能改善的主要原因。或充满不同纳米流体的OHP的劣化。

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