Haque A K M Mahmudul, Kim Sedong, Kim Junhyo, Noh Jungpil, Huh Sunchul, Choi Byeongkeun, Chung Hanshik, Jeong Hyomin
Department of Energy and Mechanical Engineering, Gyeongsang National University, Cheondaegukchi-Gil 38, Tongyeong, Gyeongnam 650-160, South Korea.
Department of Marine Engineering, Mokpo National Maritime University, Haeyangdaehang-Ro 91, Mokpo-si, Jeollanam-do, 530-729, South Korea.
J Nanosci Nanotechnol. 2018 Mar 1;18(3):1730-1740. doi: 10.1166/jnn.2018.14216.
This study presents the forced convective heat transfer of a nanofluid consisting of distilled water and different weight concentrations (1 wt% and 2 wt%) of Al2O3 nanoparticles flowing in a vertical shell and tube heat exchanger under counter flow and laminar flow regime with certain constant heat flaxes (at 20 °C, 30 °C, 40 °C and 50 °C). The Al2O3 nanoparticles of about 50 nm diameter are used in the present study. Stability of aqueous Al2O3 nanofluids, TEM, thermal conductivity, temperature differences, heat transfer rate, T-Q diagrams, LMTD and convective heat transfer coefficient are investigated experimentally. Experimental results emphasize the substantial enhancement of heat transfer due to the Al2O3 nanoparticles presence in the nanofluid. Heat transfer rate for distilled water and aqueous nanofluids are calculated after getting an efficient setup which shows 19.25% and 35.82% enhancement of heat transfer rate of 1 wt% and 2 wt% aqueous Al2O3 nanofluids as compared to that of distilled water. Finally, the analysis shows that though there are 27.33% and 59.08% enhancement of 1 wt% Al2O3 and 2 wt% Al2O3 respectively as compared to that of distilled water at 30 °C, convective heat transfer coefficient decreases with increasing heat flux of heated fluid in this experimental setup.
本研究呈现了一种纳米流体的强制对流换热情况,该纳米流体由蒸馏水和不同重量浓度(1 wt%和2 wt%)的Al2O3纳米颗粒组成,在逆流和层流状态下,于垂直管壳式换热器中流动,热流保持恒定(温度分别为20°C、30°C、40°C和50°C)。本研究使用了直径约为50 nm的Al2O3纳米颗粒。对水基Al2O3纳米流体的稳定性、透射电子显微镜(TEM)、热导率、温差、传热速率、T-Q图、对数平均温差(LMTD)和对流换热系数进行了实验研究。实验结果强调了纳米流体中Al2O3纳米颗粒的存在显著增强了传热。在获得高效装置后,计算了蒸馏水和水基纳米流体的传热速率,结果表明,与蒸馏水相比,1 wt%和2 wt%的水基Al2O3纳米流体的传热速率分别提高了19.25%和35.82%。最后,分析表明,尽管在30°C时,与蒸馏水相比,1 wt% Al2O3和2 wt% Al2O3的对流换热系数分别提高了27.33%和59.08%,但在该实验装置中,对流换热系数随着被加热流体热流的增加而降低。