Heat Transfer of Hybrid Nanomaterials Base Maxwell Micropolar Fluid Flow over an Exponentially Stretching Surface

被引:48
|
作者
Li, Piyu [1 ]
Z. Duraihem, Faisal [2 ]
Awan, Aziz Ullah [3 ]
Al-Zubaidi, A. [4 ]
Abbas, Nadeem [5 ]
Ahmad, Daud [3 ]
机构
[1] Xuzhou Univ Technol, Sch Math & Stat, Xuzhou 221018, Jiangsu, Peoples R China
[2] King Saud Univ, Coll Sci, Dept Math, Riyadh 11451, Saudi Arabia
[3] Univ Punjab, Dept Math, Lahore 54590, Pakistan
[4] King Khalid Univ, Coll Sci, Dept Math, Abha 61413, Saudi Arabia
[5] Quaid I Azam Univ, Dept Math, Islamabad 44000, Pakistan
关键词
boundary layer flow; micropolar hybrid nanofluid; exponential stretching surface; numerical technique; PHASE-CHANGE MATERIALS; MIXED CONVECTION; NANOFLUID; NANOPARTICLES; CYLINDER; AL2O3;
D O I
10.3390/nano12071207
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
A numerical investigation of three-dimensional hybrid nanomaterial micropolar fluid flow across an exponentially stretched sheet is performed. Recognized similarity transformations are adopted to convert governing equations from PDEs into the set ODEs. The dimensionless system is settled by the operating numerical approach bvp4c. The impacts of the nanoparticle volume fraction, dimensionless viscosity ratio, stretching ratio parameter, and dimensionless constant on fluid velocity, micropolar angular velocity, fluid temperature, and skin friction coefficient in both x-direction and y-direction are inspected. Graphical outcomes are shown to predict the features of the concerned parameters into the current problem. These results are vital in the future in the branches of technology and industry. The micropolar function R(eta) increases for higher values of the micropolar parameter and nanoparticle concentration. Micropolar function R(eta) declines for higher values of the micropolar parameter and nanoparticle concentration. Temperature function is enhanced for higher values of solid nanoparticle concentration. Temperature function declines for higher values of the micropolar parameter. The range of the physical parameters are presented as: 0.005 < phi(2) < 0.09, Pr = 6.2, 0 < K < 2, 0 < a < 2.0, phi(1) = 0.1, and 0 < c < 1.5.
引用
收藏
页数:13
相关论文
共 50 条
  • [1] MHD flow of Maxwell fluid with nanomaterials due to an exponentially stretching surface
    Umer Farooq
    Dianchen Lu
    Shahzad Munir
    Muhammad Ramzan
    Muhammad Suleman
    Shahid Hussain
    Scientific Reports, 9
  • [2] MHD flow of Maxwell fluid with nanomaterials due to an exponentially stretching surface
    Farooq, Umer
    Lu, Dianchen
    Munir, Shahzad
    Ramzan, Muhammad
    Suleman, Muhammad
    Hussain, Shahid
    SCIENTIFIC REPORTS, 2019, 9
  • [3] Flow and Heat Transfer of Maxwell Fluid Over an Exponentially Stretching Sheet: A Non-similar Solution
    Abbas, Z.
    Javed, T.
    Ali, N.
    Sajid, M.
    HEAT TRANSFER-ASIAN RESEARCH, 2014, 43 (03): : 233 - 242
  • [4] Unsteady Boundary Layer Flow and Heat Transfer over a Stretching Surface in a Micropolar Fluid
    Naza, Roslinda
    Ishak, Anuar
    Darus, Maslina
    Pop, Ioan
    APPLIED AND COMPUTATIONAL MATHEMATICS, 2ND EDITION, 2008, : 273 - +
  • [5] Flow of a thixotropic fluid over an exponentially stretching sheet with heat transfer
    Shehzad, S. A.
    Hayat, T.
    Alsaedi, A.
    JOURNAL OF APPLIED MECHANICS AND TECHNICAL PHYSICS, 2016, 57 (04) : 672 - 680
  • [6] Flow and heat transfer over an unsteady stretching sheet in a micropolar fluid
    Norfifah Bachok
    Anuar Ishak
    Roslinda Nazar
    Meccanica, 2011, 46 : 935 - 942
  • [7] Flow and heat transfer over an unsteady stretching sheet in a micropolar fluid
    Bachok, Norfifah
    Ishak, Anuar
    Nazar, Roslinda
    MECCANICA, 2011, 46 (05) : 935 - 942
  • [8] Heat transfer analysis of Williamson fluid over exponentially stretching surface
    S.NADEEM
    S.T.HUSSAIN
    Applied Mathematics and Mechanics(English Edition), 2014, 35 (04) : 489 - 502
  • [9] Heat Transfer in A Stagnation Point Flow of A Micropolar Fluid Over A Stretching Surface with Heat Generation/Absorption
    Attia, Hazem Ali
    JOURNAL OF APPLIED SCIENCE AND ENGINEERING, 2006, 9 (04): : 299 - 305
  • [10] Heat transfer analysis of Williamson fluid over exponentially stretching surface
    Nadeem, S.
    Hussain, S. T.
    APPLIED MATHEMATICS AND MECHANICS-ENGLISH EDITION, 2014, 35 (04) : 489 - 502