Lattice Boltzmann Simulation for a Lid-Driven Cavity with Discrete Heating/Cooling Sources

被引:6
|
作者
Sivasankaran, S. [1 ,2 ]
Pan, Kuo-Long [1 ,3 ]
机构
[1] Natl Taiwan Univ, Dept Mech Engn, Taipei 10617, Taiwan
[2] Univ Malaya, Inst Math Sci, Fac Sci, Kuala Lumpur 50603, Malaysia
[3] AIAA, Reston, VA 20191 USA
关键词
HEAT-TRANSFER CHARACTERISTICS; NATURAL-CONVECTION; MIXED CONVECTION; NANOFLUIDS; UNCERTAINTIES; VISCOSITY; MODELS; FLOWS;
D O I
10.2514/1.T4777
中图分类号
O414.1 [热力学];
学科分类号
摘要
The convective flow and heat transfer of nanofluids in a square lid-driven cavity have been analyzed numerically using a lattice Boltzmann method. First, the results of lattice Boltzmann simulation are compared with those available in the literature and the solution of the finite volume method for the present problem. Justified by satisfactory accuracy, the method is then applied to studying heat transfer characteristics with various arrangements of heaters and coolers on the walls in a lid-driven cavity. The top wall moves in its own plane either leftward or rightward. The vertical walls are heated/cooled fully or partially, and the horizontal walls are adiabatic. It is observed that the heater/cooler location plays a vital role in the flow pattern and consequently the characteristics of heat transfer, for which partially heated/cooled surfaces exhibit better performance than fully heated/cooled ones. Specifically, with asymmetric allocation of thermal sources and amoving plate that introduces forced convection, the heat transfer rate is enhanced due to the coherent fluid motion driven under symmetry breaking of the thermal flow pattern. Addition of nanoparticles may also enhance heat transfer characteristics, but the improvement appears not impressive, relatively, when the added volume faction is up to 4% in this study. The work thus proposes an intriguing design on the allocation of discrete sources, which will be helpful for designing structure of electronic components and coolants of various types.
引用
收藏
页码:573 / 586
页数:14
相关论文
共 50 条
  • [31] Effect of moving wall direction on mixed convection in an inclined lid-driven square cavity with sinusoidal heating
    Sivasankaran, S.
    Cheong, H. T.
    Bhuvaneswari, M.
    Ganesan, P.
    NUMERICAL HEAT TRANSFER PART A-APPLICATIONS, 2016, 69 (06) : 630 - 642
  • [32] A Numerical Simulation on MHD Mixed Convection in a Lid-driven Cavity with Corner Heaters
    Malleswaran, A.
    Sivasankaran, S.
    JOURNAL OF APPLIED FLUID MECHANICS, 2016, 9 (01) : 311 - 319
  • [33] DIFFERENTIATED HEATED LID DRIVEN CAVITY INTERACTING WITH TUBE A Lattice Boltzmann Study
    Bennacer, Rachid
    Reggio, Marcelo
    Pellerin, Nicolas
    Ma, Xiaoyan
    THERMAL SCIENCE, 2017, 21 (01): : 89 - 104
  • [34] Numerical Simulation of Heat Transfer and Fluid Flow with lid-driven Square Cavity and Discrete Source-Sink Pairs
    Bhuiyan, Abdul Halim
    Alam, Md Shahidul
    Alim, M. A.
    7TH BSME INTERNATIONAL CONFERENCE ON THERMAL ENGINEERING (ICTE), 2017, 1851
  • [35] NUMERICAL SIMULATION ON MIXED CONVECTION IN A POROUS LID-DRIVEN CAVITY WITH NONUNIFORM HEATING ON BOTH SIDE WALLS
    Sivasankaran, S.
    Pan, K. L.
    NUMERICAL HEAT TRANSFER PART A-APPLICATIONS, 2012, 61 (02) : 101 - 121
  • [36] Numerical solution of nanofluid mixed convection heat transfer in a lid-driven square cavity with a triangular heat source
    Kalteh, Mohammad
    Javaherdeh, Kourosh
    Azarbarzin, Toraj
    POWDER TECHNOLOGY, 2014, 253 : 780 - 788
  • [37] Lattice Boltzmann Simulation of Mixed Convection Heat Transfer in a Driven Cavity with Non-uniform Heating of the Bottom Wall
    Bettaibi, Soufiene
    Sediki, Ezeddine
    Kuznik, Frederic
    Succi, Sauro
    COMMUNICATIONS IN THEORETICAL PHYSICS, 2015, 63 (01) : 91 - 100
  • [38] Analysis of visualization techniques of bottom heated lid-driven square cavity
    Narayana, Vekamulla
    Rani, Hari Ponnamma
    HEAT TRANSFER, 2020, 49 (06) : 3549 - 3559
  • [39] Mixed convection in an inclined lid-driven cavity with non-uniform heating on both sidewalls
    Sivakumar, V.
    Sivasankaran, S.
    JOURNAL OF APPLIED MECHANICS AND TECHNICAL PHYSICS, 2014, 55 (04) : 634 - 649
  • [40] Numerical simulation of three-sided lid-driven square cavity
    Kamel, Abanoub G.
    Haraz, Eman H.
    Hanna, Sarwat N.
    ENGINEERING REPORTS, 2020, 2 (04)