MHD MIXED CONVECTIVE TRANSPORT IN SQUARE ENCLOSURE WITH TWO ROTATING CIRCULAR CYLINDERS

被引:39
作者
Chatterjee, Dipankar [1 ]
Halder, Pabitra [1 ]
机构
[1] CSIR Cent Mech Engn Res Inst, Simulat & Modeling Lab, Durgapur 713209, India
关键词
LID-DRIVEN CAVITY; LAMINAR NATURAL-CONVECTION; HORIZONTAL ENCLOSURE; HEAT-TRANSFER; RECTANGULAR CAVITY; FLOW; SIMULATION; GENERATION; MODELS;
D O I
10.1080/10407782.2013.846687
中图分类号
O414.1 [热力学];
学科分类号
摘要
This study investigates the two-dimensional hydromagnetic mixed convective transport in a cooled square enclosure filled with an electrically conducting fluid in presence of two inner heated circular cylinders with identical shape. The centers of the two equidiameter cylinders are placed at those of the lower and upper half of the enclosure, respectively, and the gap between the cylinders is kept fixed. The cylinders may be either kept stationary or made to rotate in their own plane about their centroidal axes. Additionally, cylinders may rotate either in the same direction or in the opposite direction. All of the walls of the enclosure are kept isothermal with temperatures less than that of the cylinders. A uniform magnetic field is applied along the horizontal direction normal to the vertical wall. All solid walls are assumed electrically insulated. Simulations are performed by deploying a finite volume technique for various controlling parameters, such as the Rayleigh number (10(3) <= Ra <= 10(5)) and Hartmann number (0 <= Ha <= 50), keeping the Reynolds number based on the cylinder rotation fixed as Re = 100. The flow and thermal fields are analyzed through streamline and isotherm plots for various Ha, Ra, and different combinations of cylinder rotation. Furthermore, the effects of Ha, Ra, and cylinder rotation on the heat transfer characteristics are portrayed through the local and average Nusselt numbers on all of the cylinder surfaces and the bulk average fluid temperature plots.
引用
收藏
页码:802 / 824
页数:23
相关论文
共 48 条
[1]   Numerical study of laminar natural convection in tilted enclosure with transverse magnetic field [J].
Al-Najem, NM ;
Khanafer, KM ;
El-Refaee, MM .
INTERNATIONAL JOURNAL OF NUMERICAL METHODS FOR HEAT & FLUID FLOW, 1998, 8 (5-6) :651-+
[2]  
[Anonymous], FLUENT 6 0 US GUID
[3]   Mixed convection with heating effects in a vertical porous annulus with a radially varying magnetic field [J].
Barletta, A. ;
Lazzari, S. ;
Magyari, E. ;
Pop, I. .
INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 2008, 51 (25-26) :5777-5784
[4]   Hydromagnetic combined convection flow in a vertical lid-driven cavity with internal heat generation or absorption [J].
Chamkha, AJ .
NUMERICAL HEAT TRANSFER PART A-APPLICATIONS, 2002, 41 (05) :529-546
[5]   MIXED CONVECTION HEAT TRANSFER OF AIR INSIDE A SQUARE VENTED CAVITY WITH A HEATED HORIZONTAL SQUARE CYLINDER [J].
Chamkha, Ali J. ;
Hussain, Salam Hadi ;
Abd-Amer, Qusay Rashid .
NUMERICAL HEAT TRANSFER PART A-APPLICATIONS, 2011, 59 (01) :58-79
[6]   HYDROMAGNETIC MIXED CONVECTIVE TRANSPORT IN A VERTICAL LID-DRIVEN CAVITY INCLUDING A HEAT CONDUCTING ROTATING CIRCULAR CYLINDER [J].
Chatterjee, Dipankar ;
Mondal, Bittagopal ;
Halder, Pabitra .
NUMERICAL HEAT TRANSFER PART A-APPLICATIONS, 2014, 65 (01) :48-65
[7]   Magnetoconvective Transport in a Vertical Lid-Driven Cavity Including a Heat Conducting Square Cylinder with Joule Heating [J].
Chatterjee, Dipankar ;
Halder, Pabitra ;
Mondal, Sinchan ;
Bhattacharjee, Supratim .
NUMERICAL HEAT TRANSFER PART A-APPLICATIONS, 2013, 64 (12) :1050-1071
[8]   MHD Mixed Convection in a Lid-Driven Cavity Including a Heated Source [J].
Chatterjee, Dipankar .
NUMERICAL HEAT TRANSFER PART A-APPLICATIONS, 2013, 64 (03) :235-254
[9]   COMPARATIVE ANALYSIS OF THERMAL MODELS IN THE LATTICE BOLTZMANN METHOD FOR THE SIMULATION OF NATURAL CONVECTION IN A SQUARE CAVITY [J].
Choi, Seok-Ki ;
Kim, Seong-O .
NUMERICAL HEAT TRANSFER PART B-FUNDAMENTALS, 2011, 60 (02) :135-145
[10]   Combined effect of radiation and natural convection in a square cavity differentially heated with a periodic temperature [J].
El Ayachi, R. ;
Raji, A. ;
Hasnaoui, M. ;
Bahlaoui, A. .
NUMERICAL HEAT TRANSFER PART A-APPLICATIONS, 2008, 53 (12) :1339-1356