Thermal performances and stabilities of nanofluids in an electrical oil heater

被引:0
作者
Fevzi Sahin
Lutfu Namli
机构
[1] Ondokuz Mayis University,
来源
Journal of Thermal Analysis and Calorimetry | 2021年 / 145卷
关键词
Nanofluids stability; Electric oil heater; Thermal conductivity; Alümina; Titanium oksit;
D O I
暂无
中图分类号
学科分类号
摘要
In this study, different nanofluids synthesized with aluminium oxide (alumina) and titanium dioxide in mass ratios of 1%, 3%, and 5% were tested in an electric oil radiator heater. The base fluid is heat transfer oil, and the nanofluids were synthesized using the two-step method. Simultaneously, optimum ultrasonic mixing times and surfactant amounts were determined to increase the nanofluids’ stability values. The stability of the nanofluids produced with alumina and titanium dioxide in mass ratios of 1%, 3%, and 5% was determined by using the sedimentation method. Among the alumina and titanium dioxide nanofluids whose thermal properties were measured, the nanofluids with the highest stability and the best thermal properties were used in heating experiments. The highest thermal improvement rates were 6% for alumina nanofluid and about 9% for titanium dioxide nanofluid, in the 5% mass ratio of nanoparticles. The temperature differences of the alumina and titanium dioxide nanofluids with respect to the base fluid were highest in the first region, at 8% and 10%, respectively, while the highest 11% and 27% temperature differences in the second region were measured, respectively. The stability values of the nanofluids in which significant increases in thermal values were obtained were maintained for long periods. It has been shown that nanofluids can be used in an industrial device.
引用
收藏
页码:3195 / 3206
页数:11
相关论文
共 132 条
  • [1] Shahrul IM(2016)Experimental investigation on Al Int J Heat Mass Transf 97 547-558
  • [2] Mahbubul IM(2016)O Exp Therm Fluid Sci 9 202-212
  • [3] Saidur R(2018)–W, SiO J Nanomater 2018 1-33
  • [4] Sabri MFM(2018)–W and ZnO–W nanofluids and their application in a shell and tube heat exchanger J Therm Anal Calorim 131 2843-2863
  • [5] Babita SSK(2012)Preparation and evaluation of stable nanofluids for heat transfer application: a review Renew Sustain Energy Rev 16 5625-5638
  • [6] Gupta SM(2017)A review on nanofluids: fabrication, stability, and thermophysical properties Energy Procedia 142 2547-2553
  • [7] Ali N(2014)Experimental investigation of optimum thermal performance and pressure drop of water-based Al Int J Therm Sci 76 168-189
  • [8] Teixeira JA(2011)O Int J Heat Mass Transf 54 4051-4068
  • [9] Addali A(2019), TiO J Therm Anal Calorim 135 393-418
  • [10] Topuz A(2020) and ZnO nanofluids flowing inside a circular microchannel J Therm Anal Calorim 56 1-18