Effect of Aspect Ratio on Convective Heat Transfer for Flat Cross Section Using Nanofluid

被引:2
|
作者
Faysal, Syed Rafat [1 ]
Ovi, Ifat Rabbil Qudrat [1 ]
Islam, A. K. M. Sadrul [1 ]
机构
[1] Islamic Univ Technol, Dept Mech & Chem Engn, Gazipur 1704, Bangladesh
来源
7TH BSME INTERNATIONAL CONFERENCE ON THERMAL ENGINEERING (ICTE) | 2017年 / 1851卷
关键词
Nanofluid; Flat cross section; Nusselt number; H1 Boundary condition;
D O I
10.1063/1.4984645
中图分类号
O59 [应用物理学];
学科分类号
摘要
For a typical cooling application, enhancement of convective heat transfer greatly depends on tube cross sections. This phenomena was studied by performing numerical simulations on different cross sections for laminar flow with Nanofluids, containing different volume fractions (1%, 2%& 3%) of Aluminum oxide water. Constant axial heat flux with constant peripheral wall temperature i.e. H1 boundary condition was applied and results were validated with existing cross sections. After accomplishing CFD analysis on several cross sections, convective heat transfer coefficient was found highest in case of flat cross section and then the effect of aspect ratio on Nusselt number was investigated. Result shows that Nusselt number increases exponentially with aspect ratio and after reaching a certain aspect ratio, and beyond that Nusselt number becomes constant.
引用
收藏
页数:8
相关论文
共 50 条
  • [31] CONVECTIVE HEAT TRANSFER IN THE FLOW OF A NANOFLUID IN AN INCLINED SQUARE ENCLOSURE
    Al-Kalbani, K. S.
    Rahman, M. M.
    JOURNAL OF ENGINEERING PHYSICS AND THERMOPHYSICS, 2019, 92 (05) : 1150 - 1170
  • [32] Convective heat transfer in a porous enclosure saturated by nanofluid with different heat sources
    Muthtamilselvan M.
    Sureshkumar S.
    Muthtamilselvan, M. (muthtamil1@yahoo.co.in), 2018, Walter de Gruyter GmbH (07) : 1 - 16
  • [33] Heat transfer enhancement for Maxwell nanofluid flow subject to convective heat transport
    M Khan
    M Irfan
    W A Khan
    Pramana, 2019, 92
  • [34] 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):
  • [35] Simulating the convective heat transfer of nanofluid Poiseuille flow in a nanochannel by molecular dynamics method
    Motlagh, Mohammad Bagheri
    Kalteh, Mohammad
    INTERNATIONAL COMMUNICATIONS IN HEAT AND MASS TRANSFER, 2020, 111
  • [36] Convective Heat Transfer Performance of Nanofluid in a Horizontal Annular Duct Considering Nanoparticles Shapes Effect
    Benkhedda, Mohamed
    Boufendi, Toufik
    PROCEEDINGS OF 2019 7TH INTERNATIONAL RENEWABLE AND SUSTAINABLE ENERGY CONFERENCE (IRSEC), 2019, : 624 - 629
  • [37] Effect of Thermal Radiation and Suction on Convective Heat Transfer of Nanofluid along a Wedge in the Presence of Heat Generation/Absorption
    Kasmani, Ruhaila Md
    Sivasankaran, S.
    Bhuvaneswari, M.
    Siri, Zailan
    22ND NATIONAL SYMPOSIUM ON MATHEMATICAL SCIENCES (SKSM22), 2015, 1682
  • [38] 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,
  • [39] Convective heat transfer inside rotational cascades with flat blades
    Mori, M
    Novak, L
    Sekavcnik, M
    STROJNISKI VESTNIK-JOURNAL OF MECHANICAL ENGINEERING, 2003, 49 (09): : 445 - 457
  • [40] Effect of nanofluid on flat heat pipe thermal performance
    Chen, Yu-Tang
    Wei, Wei-Chiang
    Kang, Shung-Wen
    Yu, Chun-Sheng
    TWENTY FOURTH ANNUAL IEEE SEMICONDUCTOR THERMAL MEASUREMENT AND MANAGEMENT SYMPOSIUM, PROCEEDINGS 2008, 2008, : 16 - +