Two-phase numerical model for thermal conductivity and convective heat transfer in nanofluids

被引:0
作者
Sasidhar Kondaraju
Joon Sang Lee
机构
[1] Yonsei University,Department of Mechanical Engineering
来源
Nanoscale Research Letters | / 6卷
关键词
Thermal Conductivity; Nusselt Number; Convective Heat Transfer; Effective Thermal Conductivity; Base Fluid;
D O I
暂无
中图分类号
学科分类号
摘要
Due to the numerous applications of nanofluids, investigating and understanding of thermophysical properties of nanofluids has currently become one of the core issues. Although numerous theoretical and numerical models have been developed by previous researchers to understand the mechanism of enhanced heat transfer in nanofluids; to the best of our knowledge these models were limited to the study of either thermal conductivity or convective heat transfer of nanofluids. We have developed a numerical model which can estimate the enhancement in both the thermal conductivity and convective heat transfer in nanofluids. It also aids in understanding the mechanism of heat transfer enhancement. The study reveals that the nanoparticle dispersion in fluid medium and nanoparticle heat transport phenomenon are equally important in enhancement of thermal conductivity. However, the enhancement in convective heat transfer was caused mainly due to the nanoparticle heat transport mechanism. Ability of this model to be able to understand the mechanism of convective heat transfer enhancement distinguishes the model from rest of the available numerical models.
引用
收藏
相关论文
共 68 条
  • [1] Ahuja AS(1975)Augmentation of heat transfer in laminar flow of polystyrene suspensions J Appl Phys 46 3408-3425
  • [2] Eastman JA(1999)Novel thermal properties of nanostructured materials Mater Sci Forum 312-314 629-634
  • [3] Choi SUS(1999)Thermal conductivity of nanoparticle-fluid mixture J Thermophys Heat Transfer 13 474-480
  • [4] Li S(2001)Anomalous thermal conductivity enhancement in nanotube suspensions Appl Phys Lett 79 2252-2254
  • [5] Soyez G(2008)Investigations of thermal conductivity and viscosity of nanofluids Int J Thermal Sci 47 560-568
  • [6] Thompson LJ(2006)Experimental investigation of temperature and volume fraction variations on the effective thermal conductivity of nanoparticle suspensions (nanofluids) J Appl Phys 99 084314-773
  • [7] Melfi RJD(2006)Effects of nanoparticles clustering and alignment on thermal conductivities of Fe3O4 aqueous nanofluids Appl Phys Lett 89 023123-205
  • [8] Wang X(2004)Brownian dynamics simulation to determine the effective thermal conductivity of nanofluids J Appl Phys 95 6492-557
  • [9] Xu X(2009)Brownian dynamics simulation for the prediction of effective thermal conductivity of nanofluids J Nanopart Res 11 767-144
  • [10] Choi SUS(2005)Lattice Boltzmann model for nanofluids Heat Mass Trans 41 199-890