Estimation of boundary-layer flow of a nanofluid past a stretching sheet: A revised model

被引:0
|
作者
Naeema Ishfaq
Zafar Hayat Khan
Waqar Ahmad Khan
Richard J. Culham
机构
[1] Peking University,School of Mathematical Sciences
[2] University of Malakand,Department of Mathematics
[3] Dir (Lower),Department of Mechanical and Industrial Engineering, College of Engineering
[4] Majmaah University,Department of Mechanical Engineering
[5] University of Waterloo,undefined
来源
Journal of Hydrodynamics | 2016年 / 28卷
关键词
boundary layer flow; nanofluid; stretching sheet; Brownian motion; thermophoresis;
D O I
暂无
中图分类号
学科分类号
摘要
The previous model for the boundary layer nanofluid flow past a stretching surface with a specified nanoparticle volume fraction on the surface is revisited. The major limitation of the previous model is the active control of the nanoparticle volume fraction on the surface. In a revised model proposed in this paper, the nanoparticle volume fraction on the surface is passively controlled, which accounts for the effects of both the Brownian motion and the thermophoresis under the boundary condition, whereas the Buongiorno’s model considers both effects in the governing equations. The assumption of zero nanoparticle flux on the surface makes the model physically more realistic. In the revised model, the dimensionless heat transfer rates are found to be higher whereas the dimensionless mass transfer rates are identically zero due to the passive boundary condition. It is also found that the Brownian motion parameter has a negligible effect on the Nusselt number.
引用
收藏
页码:596 / 602
页数:6
相关论文
共 50 条
  • [31] Suspended Particle Effect on Nanofluid Boundary Layer Flow Past a Stretching Surface
    Gireesha, B. J.
    Mahanthesh, B.
    Gorla, Rama Subba Reddy
    JOURNAL OF NANOFLUIDS, 2014, 3 (03) : 267 - 277
  • [32] Numerical Investigation of a Two-Phase Nanofluid Model for Boundary Layer Flow Past a Variable Thickness Sheet
    Liu, Chunyan
    Zheng, Liancun
    Lin, Ping
    Pan, Mingyang
    Liu, Fawang
    ZEITSCHRIFT FUR NATURFORSCHUNG SECTION A-A JOURNAL OF PHYSICAL SCIENCES, 2018, 73 (03): : 229 - 237
  • [33] Mixed convection boundary-layer stagnation point flow past a vertical stretching/shrinking surface in a nanofluid
    Othman, Noor Adila
    Yacob, Nor Azizah
    Bachok, Norfifah
    Ishak, Anuar
    Pop, Ioan
    APPLIED THERMAL ENGINEERING, 2017, 115 : 1412 - 1417
  • [34] Transition of MHD boundary layer flow past a stretching sheet
    Kumaran, V.
    Kumar, A. Vanav
    Pop, I.
    COMMUNICATIONS IN NONLINEAR SCIENCE AND NUMERICAL SIMULATION, 2010, 15 (02) : 300 - 311
  • [35] Unsteady boundary layer flow of nanofluid past a permeable stretching/shrinking sheet with convective heat transfer
    Malvandi, A.
    Hedayati, F.
    Ganji, D. D.
    Rostamiyan, Y.
    PROCEEDINGS OF THE INSTITUTION OF MECHANICAL ENGINEERS PART C-JOURNAL OF MECHANICAL ENGINEERING SCIENCE, 2014, 228 (07) : 1175 - 1184
  • [36] Chemical reaction effect on MHD boundary-layer flow of two-phase nanofluid model over an exponentially stretching sheet with a heat generation
    Eid, Mohamed R.
    JOURNAL OF MOLECULAR LIQUIDS, 2016, 220 : 718 - 725
  • [37] Effects of magnetic field on radiative flow of a nanofluid past a stretching sheet
    Khan, Md. Shakhaoath
    Alam, Md. Mahmud
    Ferdows, M.
    5TH BSME INTERNATIONAL CONFERENCE ON THERMAL ENGINEERING, 2013, 56 : 316 - 322
  • [38] Stagnation Point Flow Past a Stretching Sheet in a Nanofluid with Slip Condition
    Mohamed, M. K. A.
    Noar, N. A. Z.
    Salleh, M. Z.
    Ishak, A.
    2ND ISM INTERNATIONAL STATISTICAL CONFERENCE 2014 (ISM-II): EMPOWERING THE APPLICATIONS OF STATISTICAL AND MATHEMATICAL SCIENCES, 2015, 1643 : 635 - 641
  • [39] BOUNDARY-LAYER FLOW AND HEAT TRANSFER OF CROSS FLUID OVER A STRETCHING SHEET
    Khan, Masood
    Manzur, Mehwish
    Rahman, Masood Ur
    THERMAL SCIENCE, 2019, 23 (01): : 307 - 318
  • [40] Combined impact of radiation and chemical reaction on MHD hyperbolic tangent nanofluid boundary layer flow past a stretching sheet
    Athal, I.
    Haewon, Byeon
    Sasikala, A.
    Reddy, B. Narsimha
    Govindan, Vediyappan
    Maddileti, P.
    Saritha, K.
    Reddy, B. Shashidar
    Rajakumari, S.
    Tawade, Jagadish V.
    Tamam, Nissren
    Abdullaeva, Barno Sayfutdinovna
    Chohan, Jasgurpreetsingh
    Mishra, Raghawendra
    MODERN PHYSICS LETTERS B, 2023,