Experimental investigation of heat transfer enhancement in pool boiling using novel Ag/ZnO hybrid nanofluids

被引:0
作者
Pravin O. Sharma
Surendra D. Barewar
Sandesh S. Chougule
机构
[1] The LNM Institute of Information Technology,Department of Mechanical Engineering
来源
Journal of Thermal Analysis and Calorimetry | 2021年 / 143卷
关键词
Pool boiling; Hybrid nanofluids; Heat transfer enhancement; CHF;
D O I
暂无
中图分类号
学科分类号
摘要
The present study aims at investigating the enhancements in thermal properties, CHF and HTC of novel Ag/ZnO hybrid nanofluid at various concentrations. A cylindrical copper test piece of 20 mm diameter was used as a heated surface. Stable nanofluids were prepared by dispersing the hybrid nanoparticles through ultra-sonication process at three different volume concentrations (Ø): 0.02%, 0.06% and 0.1%. The thermal conductivity of the hybrid nanofluids was found to be 32% higher at 45 °C when compared with DI water. During pool boiling experimentation an increase in concentration led to increased heat transfer coefficient (HTC) and critical heat flux (CHF). Maximum values of CHF and HTC were found to be 65.51% and 179.92%, respectively, for Ø = 0.1% when compared with base fluid, i.e., DI water. Also, any further increase in volume concentration beyond 0.1% deteriorated the boiling heat transfer.
引用
收藏
页码:1051 / 1061
页数:10
相关论文
共 127 条
  • [1] Tuckerman DB(1981)High-performance heat sinking for VLSI IEEE Electron Device Lett EDL-2 126-129
  • [2] Pease RFW(2002)Nucleate pool boiling on porous metallic coatings Exp Therm Fluid Sci. 25 557-564
  • [3] Cieslinski JT(2015)Enhanced pool boiling for electronics cooling using porous fin tops on open microchannels with FC-87 Appl Therm Eng 91 426-433
  • [4] Jaikumar A(2010)Nucleate boiling heat transfer enhancement for water and FC-72 on titanium oxide and silicon oxide surfaces Int J Heat Mass Transf 53 1773-1777
  • [5] Kandlikar SG(2016)Independent and collective roles of surface structures at different length scales on pool boiling heat transfer Sci Rep 6 1-15
  • [6] Wu W(2014)Materials, fabrication, and manufacturing of micro/nano-structured surfaces for phase-change heat transfer enhancement Nanoscale Microscale Thermophys Eng 18 288-310
  • [7] Bostanci H(2018)Experimental investigation on the effect of size and pitch of hydrophobic square patterns on the pool boiling heat transfer performance of cylindrical copper surface Inventions. 3 1-15
  • [8] Chow LC(2016)Pool boiling with high heat flux enabled by a porous artery structure Appl Phys Lett 108 2339011-2339015
  • [9] Hong Y(2010)Experimental study of enhanced nucleate boiling heat transfer on uniform and modulated porous structures Front Heat Mass Transf 1 1-10
  • [10] Su M(2019)Enhancement of flow boiling heat transfer performance using single-step electrodeposited Cu–Al Iran J Sci Technol Trans Mech Eng 30 901-906