Niu Yan-Fang, Zhao Wei-Lin, Gong Yu-Ying
J Nanosci Nanotechnol. 2015 Apr;15(4):2932-8. doi: 10.1166/jnn.2015.9689.
The four miniature heat pipes filled with DI water and SiO2-water nanofluids containing different volume concentrations (0.2%, 0.6% and 1.0%) are experimentally measured on the condition of air and water cooling. The wall temperature and the thermal resistance are investigated for three inclination angles. At the same of inlet heat water temperature in the heat system, it is observed that the total wall temperatures on the evaporator section are almost retaining constant by air cooling and the wall temperatures at the front end of the evaporator section are slightly reduced by water cooling. However, the wall temperatures at the condenser section using SiO2-water nanofluids are all higher than that for DI water on the two cooling conditions. As compared with the heat pipe using DI water, the decreasing of the thermal resistance in heat pipe using nanofluids is about 43.10%-74.46% by air cooling and 51.43%-72.22% by water cooling. These indicate that the utilization of SiO2-water nanofluids as working fluids enhances the performance of the miniature heat pipe. When the four miniature heat pipes are cut to examine at the end of the experiment, a thin coating on the surface of the screen mesh of the heat pipe using SiO2-water nanofluids is found. This may be one reason for reinforcing the heat transfer performance of the miniature heat pipe.
对四根填充去离子水和含有不同体积浓度(0.2%、0.6%和1.0%)的二氧化硅 - 水纳米流体的微型热管,在风冷和水冷条件下进行了实验测量。研究了三种倾斜角度下的壁温与热阻。在热系统中进水热水温度相同的情况下,观察到风冷时蒸发器段的总壁温几乎保持恒定,水冷时蒸发器段前端的壁温略有降低。然而,在两种冷却条件下,使用二氧化硅 - 水纳米流体的冷凝器段壁温均高于去离子水的壁温。与使用去离子水的热管相比,使用纳米流体的热管热阻通过风冷降低了约43.10% - 74.46%,通过水冷降低了51.43% - 72.22%。这些表明将二氧化硅 - 水纳米流体用作工作流体可提高微型热管的性能。在实验结束时将四根微型热管切开检查时,发现使用二氧化硅 - 水纳米流体的热管筛网表面有一层薄涂层。这可能是增强微型热管传热性能的一个原因。