Sriharan G, Harikrishnan S, Ali Hafiz Muhammad
Department of Mechanical Engineering, AVC College of Engineering, Mayiladuthurai, Tamil Nadu, India.
Department of Mechanical Engineering, Kings Engineering College, Irungattukottai, Chennai, India.
Nanotechnology. 2022 Sep 7;33(47). doi: 10.1088/1361-6528/ac8995.
The thermal performance of different hybrid nanofluids on the mini hexagonal tube heat sink has been investigated experimentally. AlO/SiO-DIW, AlO/CuO-DIW, and CuO/SiO-DIW nanofluids have been used as the working fluids. The aggregate of 0.01 volume fraction of AlO, CuO, and SiOnanoparticles for hybridizing ratios (80:20) has been considered to prepare deionized water-based hybrid nanofluids. The thermal performance of three different hybrid nanofluids inside the mini hexagonal tube heat sink has been assessed. The varying volumetric flow rates of 15-50 lph have been maintained on the hexagonal tube side and 50 lph on the mini passage side. Herein, the proposed hexagonal-shaped heat sink provides a larger heat contact surface to exchange the heat between the hybrid nanofluids and hot DIW. It is divulged that the increase in the volume flow rate of nanofluids promotes the higher Brownian motion, leading to an increase in convective heat transfer. Amongst three hybrid nanofluids, CuO/SiO-DIW nanofluids have revealed a slight increase in pumping power while increasing the volume flow rate. From the experimental results, it is shown that the heat transfer coefficient, effectiveness, and Nusselt number have been improved by 54.5%, 42%, and 28.4%, respectively, for AlO/CuO-DIW nanofluids. Thus, AlO/CuO-DIW nanofluid can be deemed to be an efficient working fluid for the miniature heat sinks to accelerate the heat transfer rates.
已通过实验研究了不同混合纳米流体在微型六角形管散热器上的热性能。AlO/SiO-去离子水(DIW)、AlO/CuO-去离子水和CuO/SiO-去离子水纳米流体被用作工作流体。为制备去离子水基混合纳米流体,已考虑将AlO、CuO和SiO纳米颗粒的0.01体积分数聚集体用于(80:20)的混合比例。已评估了微型六角形管散热器内三种不同混合纳米流体的热性能。在六角形管侧维持15 - 50升/小时的变化体积流量,在微型通道侧维持50升/小时的体积流量。在此,所提出的六角形散热器提供了更大的热接触表面,以在混合纳米流体和热去离子水之间交换热量。据透露,纳米流体体积流量的增加促进了更高的布朗运动,导致对流热传递增加。在三种混合纳米流体中,CuO/SiO-去离子水纳米流体在增加体积流量时显示出泵浦功率略有增加。从实验结果可知,对于AlO/CuO-去离子水纳米流体,传热系数、效率和努塞尔数分别提高了54.5%、42%和28.4%。因此,AlO/CuO-去离子水纳米流体可被视为微型散热器的一种高效工作流体,以加速热传递速率。