Simulating the convective heat transfer of nanofluid Poiseuille flow in a nanochannel by molecular dynamics method

被引:38
|
作者
Motlagh, Mohammad Bagheri [1 ]
Kalteh, Mohammad [1 ]
机构
[1] Univ Guilan, Fac Mech Engn, POB 3756, Rasht, Iran
关键词
Molecular dynamics simulation; Nanofluid; Nanoparticle; Nanochannel; Nusselt number; Convective heat transfer; Poiseuille flow; LIQUID-SOLID INTERFACE; THERMAL-CONDUCTIVITY; LAMINAR-FLOW; TRANSFER AUGMENTATION; WATER-FLOW; NANOPARTICLES; ENHANCEMENT; SUSPENSIONS; BEHAVIORS;
D O I
10.1016/j.icheatmasstransfer.2020.104478
中图分类号
O414.1 [热力学];
学科分类号
摘要
This paper investigates convective heat transfer of nanofluid flowing through a copper nanochannel. Ar - Cu Nanofluid is used to study in the nanochannel. Simulations are performed by LAMMPS code and the effects of nanoparticles presence on convective heat transfer are investigated. For this purpose, Nusselt number for nanofluid is calculated and compared with base liquid. The results indicate that the presence of nanoparticles increases the Nusselt number, which is due to the change in the velocity and structure of base liquid atoms. Furthermore, the investigation of Nusselt number for nanofluid shows that it is affected by diameter and volume concentration of nanoparticles. In a same volume concentration, with the increase in diameter, the ratio of the surface to the volume of nanoparticles decreases. This reduces the fluid atoms mobility caused by the presence of nanoparticles. Also, decreasing this ratio reduces the amount of solid -like layer in vicinity of the nanoparticles, which decreases the heat transfer capability in the nanochannel. However, for constant diameter, the Nusselt number increases with increasing volume concentration, which is due to the increase in the number of nano particles and existence of more space for fluid atoms absorption.doi dbt
引用
收藏
页数:11
相关论文
共 50 条
  • [21] Molecular dynamics simulation of Couette and Poiseuille Water-Copper nanofluid flows in rough and smooth nanochannels with different roughness configurations
    Toghraie, Davood
    Hekmatifar, Maboud
    Salehipour, Yasaman
    Afrand, Masoud
    CHEMICAL PHYSICS, 2019, 527
  • [22] Heat transfer enhancement for Maxwell nanofluid flow subject to convective heat transport
    Khan, M.
    Irfan, M.
    Khan, W. A.
    PRAMANA-JOURNAL OF PHYSICS, 2019, 92 (02):
  • [23] Experimental Study on the Convective Heat Transfer of CuO-Water Nanofluid in a Turbulent Flow
    Zhang, Shaobo
    Luo, Zhongyang
    Wang, Tao
    Shou, Chunhui
    Ni, Mingjiang
    Cen, Kefa
    JOURNAL OF ENHANCED HEAT TRANSFER, 2010, 17 (02) : 183 - 196
  • [24] Convective heat transfer and flow characteristics of Cu-water nanofluid
    Qiang Li
    Yimin Xuan
    Science in China Series E: Technolgical Science, 2002, 45 (4): : 408 - 416
  • [25] Convective heat transfer and flow characteristics of Cu-water nanofluid
    Li, Q
    Xuan, YM
    SCIENCE IN CHINA SERIES E-TECHNOLOGICAL SCIENCES, 2002, 45 (04): : 408 - 416
  • [26] An optimization of heat transfer of nanofluid flow in a helically coiled pipe using Taguchi method
    Mohammadi, Majid
    Abadeh, Abazar
    Nemati-Farouji, Reza
    Passandideh-Fard, Mohammad
    JOURNAL OF THERMAL ANALYSIS AND CALORIMETRY, 2019, 138 (02) : 1779 - 1792
  • [27] Molecular dynamics study of convective heat transfer in ordered rough nanochannels
    Song, Zhao
    Cui, Zheng
    Cao, Qun
    Liu, Yu
    Li, Junhui
    JOURNAL OF MOLECULAR LIQUIDS, 2021, 337
  • [28] A molecular dynamics simulation of nanoscale convective heat transfer with the effect of axial heat conduction
    Gu, You-Wei
    Ge, Song
    Chen, Min
    MOLECULAR PHYSICS, 2016, 114 (12) : 1922 - 1930
  • [29] CONVECTIVE HEAT TRANSFER AND PUMPING POWER REQUIREMENT USING NANOFLUID FOR THE FLOW THROUGH CORRUGATED CHANNEL
    Noor, Shafi
    Ehsan, M. Monjurul
    Mayeed, M. S.
    Islam, A. K. M. Sadrul
    PROCEEDINGS OF THE ASME INTERNATIONAL MECHANICAL ENGINEERING CONGRESS AND EXPOSITION, 2015, VOL 8A, 2016,
  • [30] Multiscale simulation of flow and heat transfer of nanofluid with lattice Boltzmann method
    Zhou, Lujun
    Xuan, Yimin
    Li, Qiang
    INTERNATIONAL JOURNAL OF MULTIPHASE FLOW, 2010, 36 (05) : 364 - 374