Experimental investigation of the heat transfer and pressure drop characteristics of SiO2/water nanofluids flowing through a circular tube equipped with free rotating swirl generators

被引:0
|
作者
Chaiwat Jumpholkul
Lazarus Godson Asirvatham
Ahmet Selim Dalkılıç
Omid Mahian
Ho Seon Ahn
Dong-Wook Jerng
Somchai Wongwises
机构
[1] Thaksin University,Mechatronics Engineering Program, Faculty of Engineering
[2] King Mongkut’s University of Technology Thonburi,Fluid Mechanics, Thermal Engineering and Multiphase Flow Research Lab. (FUTURE), Department of Mechanical Engineering, Faculty of Engineering
[3] Karunya Institute of Technology and Sciences,Department of Mechanical Engineering
[4] Yildiz Technical University,Heat and Thermodynamics Division, Department of Mechanical Engineering, Faculty of Mechanical Engineering
[5] Xi’an Jiaotong University,School of Chemical Engineering and Technology
[6] Quchan University of Technology,Department of Mechanical Engineering
[7] Incheon National University,Department of Mechanical Engineering
[8] Chung-Ang University,School of Energy System Engineering
[9] The Royal Society of Thailand,The Academy of Science
来源
Heat and Mass Transfer | 2020年 / 56卷
关键词
Efficiency index; Free rotating swirl generators; SiO; /water nanofluids; Heat transfer enhancement; Pressure drop;
D O I
暂无
中图分类号
学科分类号
摘要
The heat transfer and pressure drop characteristics of SiO2/water nanofluids flowing through a horizontal circular stainless steel tube equipped with free rotating swirl generators (FRSGs) at the entrance of a test tube are reported in this article. The experimental studies were performed with a Reynolds number ranging from 3500 to 13,000; volume concentrations of 0.5, 1, and 2 vol%; and inlet temperatures of 25, 30, and 35 °C, where a constant heat flux was imposed on a test tube. FRSGs made from aluminum, with three different twisted angles (30°, 60°, and 90°) and a length of 2.3 cm, were located at the entrance of the test tube. The results indicated that FRSGs had significant effects on heat transfer and pressure drop characteristics for the flow of both water and nanofluids in the tube. The Nusselt number increased with increasing volume concentration, inlet temperature, and Reynolds number. However, the friction factor of nanofluids flowing through FRSGs was significantly greater than that of water when the Reynolds number was lower than 6000. This is because FRSGs do not rotate under the given conditions. A maximum efficiency index of 1.57–1.7 was obtained when using SiO2/water nanofluids with FRSGs at a volume concentration of 2 vol%, inlet temperature of 35 °C, and Reynolds number greater than 7000. On the other hand, the efficiency index value was lower than unity when the Reynolds number was lower than 7000 and with volume concentrations of 0.5 and 1 vol%. No significant differences were found among twisted angles of FRSGs on heat transfer, pressure drop, and efficiency index.
引用
收藏
页码:1613 / 1626
页数:13
相关论文
共 50 条
  • [21] Investigation of turbulent convective heat transfer and pressure drop of TiO2/water nanofluid in circular tube
    Sajadi, A. R.
    Kazemi, M. H.
    INTERNATIONAL COMMUNICATIONS IN HEAT AND MASS TRANSFER, 2011, 38 (10) : 1474 - 1478
  • [22] Experimental investigation on convective heat transfer and pressure drop of cone helically coiled tube heat exchanger using carbon nanotubes/water nanofluids
    Palanisamy, K.
    Kumar, P. C. Mukesh
    HELIYON, 2019, 5 (05)
  • [23] Experimental investigation on heat transfer and pressure drop of kerosene at supercritical pressure in square and circular tube with artificial roughness
    Wang, Haijun
    Luo, Yushan
    Gu, Hongfang
    Li, Hongzhi
    Chen, Tingkuan
    Chen, Jianhua
    Wu, Haibo
    EXPERIMENTAL THERMAL AND FLUID SCIENCE, 2012, 42 : 16 - 24
  • [24] Experimental investigation on the viscosity characteristics of water based SiO2 -graphite hybrid nanofluids
    Dalkilic, Ahmet Selim
    Acikgoz, Ozgen
    Kucukyildirim, Bedri Onur
    Eker, Aysegul Akdogan
    Luleci, Berk
    Jumpholkul, Chaiwat
    Wongwises, Somchai
    INTERNATIONAL COMMUNICATIONS IN HEAT AND MASS TRANSFER, 2018, 97 : 30 - 38
  • [25] Experimental investigation on heat transfer characteristics of supercritical pressure water in a horizontal tube
    Yu, Shuiqing
    Li, Huixiong
    Lei, Xianliang
    Feng, Yongchang
    Zhang, Yifan
    He, Hong
    Wang, Tai
    EXPERIMENTAL THERMAL AND FLUID SCIENCE, 2013, 50 : 213 - 221
  • [26] An experimental study on the heat transfer performance and pressure drop of TiO2-water nanofluids flowing under a turbulent flow regime
    Duangthongsuk, Weerapun
    Wongwises, Somchai
    INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 2010, 53 (1-3) : 334 - 344
  • [27] Experimental investigation on heat transfer and pressure drop of ZnO/ethylene glycol-water nanofluids in transition
    Kuo, Jenn-Kun
    Huang, Chung-Neng
    Lu, Tsung-Hung
    APPLIED THERMAL ENGINEERING, 2016, 93 : 425 - 432
  • [28] Turbulent Convective Heat Transfer and Pressure Drop of Graphene-Water Nanofluid Flowing Inside a Horizontal Circular Tube
    Akhavan-Zanjani, Hossein
    Saffar-Avval, Majid
    Mansourkiaei, Mohsen
    Ahadi, Mohammad
    Sharif, Farhad
    JOURNAL OF DISPERSION SCIENCE AND TECHNOLOGY, 2014, 35 (09) : 1230 - 1240
  • [29] Experimental study on the flow and heat transfer characteristics of Ag/water and SiO2/water nanofluids flows in helically coiled tubes
    Ardekani, A. Mokhtari
    Kalantar, V.
    Heyhat, M. M.
    JOURNAL OF THERMAL ANALYSIS AND CALORIMETRY, 2019, 137 (03) : 779 - 790
  • [30] Experimental study on the flow and heat transfer characteristics of Ag/water and SiO2/water nanofluids flows in helically coiled tubes
    A. Mokhtari Ardekani
    V. Kalantar
    M. M. Heyhat
    Journal of Thermal Analysis and Calorimetry, 2019, 137 : 779 - 790