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Numerical Heat Transfer, Part A: Applications
An International Journal of Computation and Methodology
Volume 38, 2000 - Issue 6
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Original Articles

MIXED CONVECTION IN A RECTANGULAR ENCLOSURE WITH DISCRETE HEAT SOURCES

Pages 627-652 | Published online: 29 Oct 2010

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Read on this site (13)

Lyes Nasseri, Djamel Eddine Ameziani, Omar Rahli & Rachid Bennacer. (2019) Numerical study of mixed convection in a ventilated square enclosure with the lattice Boltzmann method. Numerical Heat Transfer, Part A: Applications 75:10, pages 674-689.
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S. K. Ajmera, H. J. Shukla & A. N. Mathur. (2016) Experimental and Numerical Investigation of Convective Heat Transfer in a Multiple-ventilated Enclosure with Discrete Heat Sources. Experimental Heat Transfer 29:6, pages 721-740.
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Krunal M. Gangawane, Ram P. Bharti & Surendra Kumar. (2016) Effects of Heating Location and Size on Natural Convection in Partially Heated Open-Ended Enclosure by Using Lattice Boltzmann Method. Heat Transfer Engineering 37:6, pages 507-522.
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Monisha Roy, Tanmay Basak, S. Roy & I. Pop. (2015) Analysis of Entropy Generation for Mixed Convection in a Square Cavity for Various Thermal Boundary Conditions. Numerical Heat Transfer, Part A: Applications 68:1, pages 44-74.
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S. Sivasankaran, V. Sivakumar, Ahmed Kadhim Hussein & P. Prakash. (2014) Mixed Convection in a Lid-Driven Two-Dimensional Square Cavity with Corner Heating and Internal Heat Generation. Numerical Heat Transfer, Part A: Applications 65:3, pages 269-286.
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Asgar Minaei, Mehdi Ashjaee & Mohammad Goharkhah. (2014) Experimental and Numerical Study of Mixed and Natural Convection in an Enclosure With a Discrete Heat Source and Ventilation Ports. Heat Transfer Engineering 35:1, pages 63-73.
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AliJ. Chamkha, Salam Hadi Hussain & Qusay Rashid Abd-Amer. (2011) Mixed Convection Heat Transfer of Air inside a Square Vented Cavity with a Heated Horizontal Square Cylinder. Numerical Heat Transfer, Part A: Applications 59:1, pages 58-79.
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Tien-Mo Shih, Chandrasekhar Thamire, Chao-Ho Sung & An-Lu Ren. (2010) Literature Survey of Numerical Heat Transfer (2000–2009): Part I. Numerical Heat Transfer, Part A: Applications 57:3-4, pages 159-296.
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O. Manca, S. Nardini & K. Vafai. (2008) Experimental Investigation of Opposing Mixed Convection in a Channel with an open Cavity Below. Experimental Heat Transfer 21:2, pages 99-114.
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Oronzio Manca, Sergio Nardini & Kambiz Vafai. (2006) Experimental Investigation of Mixed Convection in a Channel With an Open Cavity. Experimental Heat Transfer 19:1, pages 53-68.
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NelsonO. Moraga & SergioE. López. (2004) NUMERICAL SIMULATION OF THREE-DIMENSIONAL MIXED CONVECTION IN AN AIR-COOLED CAVITY. Numerical Heat Transfer, Part A: Applications 45:8, pages 811-824.
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Oronzio Manca, Sergio Nardini, Khalil Khanafer & Kambiz Vafai. (2003) EFFECT OF HEATED WALL POSITION ON MIXED CONVECTION IN A CHANNEL WITH AN OPEN CAVITY. Numerical Heat Transfer, Part A: Applications 43:3, pages 259-282.
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Articles from other publishers (47)

Assia Arab, Nabil Himrane, Zouhira Hireche, Yacine Halouane, Rachid Bennacer & Djamel Eddine Ameziani. (2024) Analysis of a reactive porous separation effects on depollution and indoor air quality: Application of LBM-MRT to heat and mass transfers. International Journal of Thermal Sciences 197, pages 108754.
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Riasat Islam, A N M Fuhadul Islam & Sumon Saha. (2023) Influence of time-dependent wall temperature fluctuation on conjugate mixed convection inside a chamber with an oscillating cylinder. International Communications in Heat and Mass Transfer 147, pages 106988.
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Pushpa Akhtar, M. M. Touhid Hossain, Md. Abdul Alim & Mohammad Mokaddes Ali. (2023) Magnetohydrodynamic Mixed Convection in a Vertical Rectangular Cavity with Semi-circular Heat Source and Circular Obstacle. International Journal of Applied and Computational Mathematics 9:5.
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Shuvra Chowdhury, Partha Pratim Roy, Md. Hossain Raj & Sumon Saha. (2023) Pure mixed convection in a Non-Newtonian fluid filled lid-driven chamber with discrete bottom heating. Case Studies in Thermal Engineering 49, pages 103183.
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Sapna Jain & Rama Bhargava. (2023) Natural convection flow on a bent wavy vertical enclosure filled with power-law nanofluid simulated by Element Free Galerkin method. Mathematics and Computers in Simulation 205, pages 970-986.
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Shankar DURGAM, Ajinkya BHOSALE & Vivek BHOSALE. (2022) Geometric modification and placement of high heat flux ic chips on substrates of different materials for enhanced heat transfer. Journal of Thermal Engineering, pages 1618-1631.
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Fatih Selimefendigil, Seda Ozcan Coban & Hakan F. Öztop. (2022) CONVECTIVE DRYING OF DIFFERENT SHAPED POROUS MOIST OBJECTS IN VENTILATED SQUARE AND L-SHAPED CAVITIES. Journal of Porous Media 25:11, pages 45-70.
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Leo Lukose & Tanmay Basak. (2021) A comprehensive review on mixed convection for various patterns of kinematically and thermally induced scenarios within cavities. International Journal of Numerical Methods for Heat & Fluid Flow 31:9, pages 2879-2939.
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Surabhi Nishad & Rama Bhargava. (2020) Parallel Implementation of hybrid scheme for simulation of heat flow within a Wavy Square Enclosure with line heat source filled with nanofluid under Magnetic field effect. Heat Transfer 50:2, pages 1494-1522.
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Venkata Reddy Poluru. 2021. Advances in Fluid and Thermal Engineering. Advances in Fluid and Thermal Engineering 249 259 .
Nepal Chandra Roy, Md. Anwar Hossain, Rama Subba Reddy Gorla & Sadia Siddiqa. (2020) Natural Convection Around a Locally Heated Circular Cylinder Placed in a Rectangular Enclosure. Journal of Non-Equilibrium Thermodynamics 0:0.
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Nepal Chandra Roy, Md. Anwar Hossain & Rama Subba Reddy Gorla. (2020) Natural convection in a cavity with trapezoidal heat sources mounted on a square cylinder. SN Applied Sciences 2:2.
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Souad. Morsli, Amina. Sabeur, Harry. Ramenah, Mohammed. El Ganaoui & Rachid. Bennacer. (2020) Thermo-Fluid Simulation for Indoor Air Quality and Buildings Thermal Comfort. MATEC Web of Conferences 307, pages 01032.
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V. Cárdenas, C. Treviño, I.Y. Rosas & L. Martínez-Suástegui. (2019) Experimental study of buoyancy and inclination effects on transient mixed convection heat transfer in a channel with two symmetric open cubic cavities with prescribed heat flux. International Journal of Thermal Sciences 140, pages 71-86.
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Qiang Yu & Hang Xu. (2018) Novel wavelet-homotopy Galerkin technique for analysis of lid-driven cavity flow and heat transfer with non-uniform boundary conditions. Applied Mathematics and Mechanics 39:12, pages 1691-1718.
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Muhammad Arshad Siddiqui, Tariq Javed & Ziafat Mehmood. (2018) Enhanced thermal energy transport of a ferrofluid contained in a double-sided lid-driven square container due to adiabatic block in the presence of magnetic force. The European Physical Journal Plus 133:11.
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A Piña-Ortiz, JF Hinojosa, JMA Navarro & J Xamán. (2017) Experimental and numerical study of turbulent mixed convection in a cavity with an internal heat source. Journal of Building Physics 42:2, pages 142-172.
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A. Piña-Ortiz, J.F. Hinojosa, J.P. Xamán & J.M.A. Navarro. (2018) Test of turbulence models for heat transfer within a ventilated cavity with and without an internal heat source. International Communications in Heat and Mass Transfer 94, pages 106-114.
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Antonio Carozza. (2018) Numerical Study on Mixed Convection in Ventilated Cavities with Different Aspect Ratios. Fluids 3:1, pages 11.
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A. D. Abin Rejeesh, Selvarasu Udhayakumar, T. V. S. Sekhar & Rajagopalan Sivakumar. (2017) Mixed Convection and Heat Transfer Studies in Non-Uniformly Heated Buoyancy Driven Cavity Flow. Open Journal of Fluid Dynamics 07:02, pages 231-262.
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N. A. Bakar, A. Karimipour & R. Roslan. Numerical study of mixed convection in a lid-driven cavity in the presence of internal heat generation/absorption. Numerical study of mixed convection in a lid-driven cavity in the presence of internal heat generation/absorption.
Z. C. Briceño & J. F. Hinojosa. (2016) Numerical Study of Heat Transfer and Comfort Conditions in an Air-Cooled Ventilated Room with a Human Heat Source. Journal of Advanced Thermal Science Research 3:1, pages 1-11.
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K. Venkateshwarlu, A. K. Nayak, Bhupinder Singh, V. K. Katiyar & N. Gupta. (2016) Thermosolutal Mixed Convection in an Air Filled Ventilated Enclosure With Slot Wise Embedded Heat and Contaminant Sources. Journal of Heat Transfer 138:3.
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Przemysław Błasiak & Piotr Kolasiński. (2015) Modelling of the mixed convection in a lid-driven cavity with a constant heat flux boundary condition. Heat and Mass Transfer 52:3, pages 595-609.
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Satish Kumar Ajmera & A.N. Mathur. (2015) Experimental investigation of mixed convection in multiple ventilated enclosure with discrete heat sources. Experimental Thermal and Fluid Science 68, pages 402-411.
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Krunal Madhukar Gangawane, Ram Prakash Bharti & Surendra Kumar. (2015) Lattice Boltzmann analysis of effect of heating location and Rayleigh number on natural convection in partially heated open ended cavity. Korean Journal of Chemical Engineering 32:8, pages 1498-1514.
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Satish Kumar Ajmera & A.N. Mathur. (2015) Combined Free and Forced Convection in an Enclosure with different Ventilation Arrangements. Procedia Engineering 127, pages 1173-1180.
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D. Ramakrishna, Tanmay Basak, S. Roy & I. Pop. (2012) A complete heatline analysis on mixed convection within a square cavity: Effects of thermal boundary conditions via thermal aspect ratio. International Journal of Thermal Sciences 57, pages 98-111.
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Soheil Soleimani, D.D. Ganji, M. Gorji, H. Bararnia & E. Ghasemi. (2011) Optimal location of a pair heat source-sink in an enclosed square cavity with natural convection through PSO algorithm. International Communications in Heat and Mass Transfer 38:5, pages 652-658.
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Y.L. Tsay, J.C. Cheng & Y.L. Zhuang. (2010) Natural convective characteristics of a heat source module at different angles in the closed and ventilated cabinets. International Communications in Heat and Mass Transfer 37:8, pages 1048-1056.
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S. Sivasankaran, V. Sivakumar & P. Prakash. (2010) Numerical study on mixed convection in a lid-driven cavity with non-uniform heating on both sidewalls. International Journal of Heat and Mass Transfer 53:19-20, pages 4304-4315.
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Ghanbar Ali Sheikhzadeh, S.H. Musavi & N. Sadoughi. (2010) Effect of a Shield on Mixed Convection in a Rectangular Enclosure with Moving Cold Sidewalls and a Heat Source on the Bottom Wall. Defect and Diffusion Forum 297-301, pages 584-589.
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Fu-Yun Zhao, Di Liu, Li Tang, Yu-Long Ding & Guang-Fa Tang. (2009) Direct and inverse mixed convections in an enclosure with ventilation ports. International Journal of Heat and Mass Transfer 52:19-20, pages 4400-4412.
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Tanmay Basak, S. Roy, Pawan Kumar Sharma & I. Pop. (2009) Analysis of mixed convection flows within a square cavity with uniform and non-uniform heating of bottom wall. International Journal of Thermal Sciences 48:5, pages 891-912.
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Tanmay Basak, S. Roy, Pawan Kumar Sharma & I. Pop. (2009) Analysis of mixed convection flows within a square cavity with linearly heated side wall(s). International Journal of Heat and Mass Transfer 52:9-10, pages 2224-2242.
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Ahmet Koca. (2008) Numerical analysis of conjugate heat transfer in a partially open square cavity with a vertical heat source. International Communications in Heat and Mass Transfer 35:10, pages 1385-1395.
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E. Bilgen & A. Balkaya. (2008) Natural convection on discrete heaters in a square enclosure with ventilation ports. International Journal of Heat and Fluid Flow 29:4, pages 1182-1189.
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A. Raji, M. Hasnaoui & A. Bahlaoui. (2008) Numerical study of natural convection dominated heat transfer in a ventilated cavity: Case of forced flow playing simultaneous assisting and opposing roles. International Journal of Heat and Fluid Flow 29:4, pages 1174-1181.
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E. Bilgen & A. Muftuoglu. (2008) Cooling strategy by mixed convection of a discrete heater at its optimum position in a square cavity with ventilation ports. International Communications in Heat and Mass Transfer 35:5, pages 545-550.
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S.M. Saeidi & J.M. Khodadadi. (2007) Transient flow and heat transfer leading to periodic state in a cavity with inlet and outlet ports due to incoming flow oscillation. International Journal of Heat and Mass Transfer 50:3-4, pages 530-538.
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S.M. Saeidi & J.M. Khodadadi. (2006) Forced convection in a square cavity with inlet and outlet ports. International Journal of Heat and Mass Transfer 49:11-12, pages 1896-1906.
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Yi Yang & Qi-hong Deng. (2005) Enhancement of natural ventilation in rectangular enclosure with two openings by thin fin. Journal of Central South University of Technology 12:S1, pages 256-261.
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Mayur T. Bhoite, G.S.V.L. Narasimham & M.V. Krishna Murthy. (2005) Mixed convection in a shallow enclosure with a series of heat generating components. International Journal of Thermal Sciences 44:2, pages 121-135.
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Qi-Hong Deng, Jiemin Zhou, Chi Mei & Yong-Ming Shen. (2004) Fluid, heat and contaminant transport structures of laminar double-diffusive mixed convection in a two-dimensional ventilated enclosure. International Journal of Heat and Mass Transfer 47:24, pages 5257-5269.
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A Rivas-Cardona, A Hernandez-Guerrero, R Romero-Méndez & R Lesso-Arroyo. (2004) Liquid-mixed convection in a closed enclosure with highly-intensive heat fluxes. International Journal of Heat and Mass Transfer 47:19-20, pages 4089-4099.
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Guanghong Guo & Muhammad A.R. Sharif. (2004) Mixed convection in rectangular cavities at various aspect ratios with moving isothermal sidewalls and constant flux heat source on the bottom wall. International Journal of Thermal Sciences 43:5, pages 465-475.
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R.J. Goldstein, E.R.G. Eckert, W.E. Ibele, S.V. Patankar, T.W. Simon, T.H. Kuehn, P.J. Strykowski, K.K. Tamma, A. Bar-Cohen, J.V.R. Heberlein, J.H. Davidson, J. Bischof, F.A. Kulacki, U. Kortshagen & S. Garrick. (2002) Heat transfer – a review of 2000 literature. International Journal of Heat and Mass Transfer 45:14, pages 2853-2957.
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