MHD graphene-polydimethylsiloxane Maxwell nanofluid flow in a squeezing channel with thermal radiation effects

被引:0
|
作者
G.C.SHIT [1 ]
S.MUKHERJEE [1 ]
机构
[1] Department of Mathematics,Jadavpur University
关键词
graphene-polydimethylsiloxane (PDMS); Maxwell fluid; differential transform method (DTM); thermal radiation; Bejan number;
D O I
暂无
中图分类号
TB383.1 []; O35 [流体力学];
学科分类号
080103 ; 080704 ;
摘要
The magnetohydrodynamic (MHD) graphene-polydimethylsiloxane (PDMS) nanofluid flow between two squeezing parallel plates in the presence of thermal radiation effects is investigated. The energy efficiency of the system via the Bejan number is studied extensively. The governing partial differential equations are converted by using the similarity transformations into a set of coupled ordinary differential equations. The set of these converted equations is solved by using the differential transform method (DTM).The entropy generation in terms of the Bejan number, the coefficient of skin-friction, and the heat transfer rate is furthermore investigated under the effects of various physical parameters of interest. The present study shows that the Bejan number, the velocity and thermal profiles, and the rate of heat transfer decrease with a rise in the Deborah number De while the skin-friction coefficient increases. It is also observed that the entropy generation due to frictional forces is higher than that due to thermal effects. Thus, the study bears the potential application in powder technology as well as in biomedical engineering.
引用
收藏
页码:1269 / 1284
页数:16
相关论文
共 50 条
  • [1] MHD graphene-polydimethylsiloxane Maxwell nanofluid flow in a squeezing channel with thermal radiation effects
    Shit, G. C.
    Mukherjee, S.
    APPLIED MATHEMATICS AND MECHANICS-ENGLISH EDITION, 2019, 40 (09) : 1269 - 1284
  • [2] MHD graphene-polydimethylsiloxane Maxwell nanofluid flow in a squeezing channel with thermal radiation effects
    G. C. Shit
    S. Mukherjee
    Applied Mathematics and Mechanics, 2019, 40 : 1269 - 1284
  • [3] Thermal radiation effect on the Maxwell graphene based nanofluid passing through a squeezing channel
    Sharma, Rohit
    Mishra, Manoj Kumar
    Nirisha, Kuracha
    Nagaradhika, Vatukuru
    Chamkha, Ali J.
    NUMERICAL HEAT TRANSFER PART B-FUNDAMENTALS, 2023,
  • [4] Soret and Dufour effects on MHD squeezing flow of Jeffrey fluid in horizontal channel with thermal radiation
    Noor, Nur Azlina Mat
    Shafie, Sharidan
    Hamed, Y. S.
    Admon, Mohd Ariff
    PLOS ONE, 2022, 17 (05):
  • [5] Slip Effects on MHD Squeezing Flow of Jeffrey Nanofluid in Horizontal Channel with Chemical Reaction
    Mat Noor, Nur Azlina
    Shafie, Sharidan
    Admon, Mohd Ariff
    MATHEMATICS, 2021, 9 (11)
  • [6] Radiation effects on MHD flow of Maxwell fluid in a channel with porous medium
    Hayat, T.
    Sajjad, R.
    Abbas, Z.
    Sajid, M.
    Hendi, Awatif A.
    INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 2011, 54 (04) : 854 - 862
  • [7] MHD and Thermal Radiation Flow of Graphene Casson Nanofluid Stretching/Shrinking Sheet
    Mahabaleshwar U.S.
    Aly E.H.
    Vishalakshi A.B.
    International Journal of Applied and Computational Mathematics, 2022, 8 (3)
  • [8] Irreversibility analysis in squeezing nanofluid flow with thermal radiation
    Hayat, T.
    Ahmad, M. Waciar
    Khan, Sohail Ahamd
    Alsaedi, Ahmed
    MULTIDISCIPLINE MODELING IN MATERIALS AND STRUCTURES, 2021, 17 (03) : 636 - 653
  • [9] Simultaneous effects of heat generation/absorption and thermal radiation in magnetohydrodynamics (MHD) flow of Maxwell nanofluid towards a stretched surface
    Hayat, Tasawar
    Qayyum, Sajid
    Shehzad, Sabir Ali
    Alsaedi, Ahmed
    RESULTS IN PHYSICS, 2017, 7 : 562 - 573
  • [10] Radiation and slip effects on MHD Maxwell nanofluid flow over an inclined surface with chemical reaction
    Shah, Sajid
    Atif, Shahzada M.
    Kamran, Abid
    HEAT TRANSFER, 2021, 50 (04) : 4062 - 4085