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Experimental Heat Transfer
A Journal of Thermal Energy Generation, Transport, Storage, and Conversion
Volume 21, 2008 - Issue 2
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Original Articles

Experimental Investigation of Opposing Mixed Convection in a Channel with an open Cavity Below

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Pages 99-114 | Published online: 19 Mar 2008

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Read on this site (5)

Shafqat Hussain, Muhammad Amer Qureshi & Bengisen Pekmen Geridonmez. (2023) Impact of wavy porous layer on mixed convection flow of a hybrid nanofluid in an enclosure under the effect of partial magnetic field. Numerical Heat Transfer, Part A: Applications 0:0, pages 1-20.
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Tahereh Yazdanipour, Farhad Shahraki & Davod Mohebbi-Kalhori. (2022) Combined convective loss from a bicylindrical cavity receiver under wind condition: an experimental study. Experimental Heat Transfer 35:4, pages 440-454.
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J. P. Abraham, B. D. Plourde & L. J. Vallez. (2017) Comprehensive review and study of the buoyant air flow within positive-pressure hospital operating rooms. Numerical Heat Transfer, Part A: Applications 72:1, pages 1-20.
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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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AayushK. Sharma, PallabS. Mahapatra, NirmalK. Manna & Koushik Ghosh. (2015) Mixed Convection Heat Transfer in a Grooved Channel in the Presence of a Baffle. Numerical Heat Transfer, Part A: Applications 67:10, pages 1097-1118.
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Articles from other publishers (21)

Krishn Chandra, Safa Sabet, Huseyin Kaya, Bernardo Buonomo & Oronzio Manca. (2023) A transient numerical approach for phase change material effect on mixed convection in an open cavity. International Communications in Heat and Mass Transfer 148, pages 107051.
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Shafqat Hussain, Muhammad Amer Qureshi & Sameh E. Ahmed. (2023) Impact of wavy porous layer on the hydrodynamic forces and heat transfer of hybrid nanofluid flow in a channel with cavity under the effect of partial magnetic field. Journal of Non-Equilibrium Thermodynamics 48:3, pages 255-269.
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Ali Q. Abd Al‐Hassan & Muneer A. Ismael. (2022) Effect of triangular porous layer on the transfer of heat and species in a channel‐open cavity. Heat Transfer 52:2, pages 1300-1323.
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Khalil Khanafer & Mamdouh El Haj Assad. (2021) Mathematical Modeling of Fluid Flow Through a Hollow Fiber Water System Using Porous Medium Model. Arabian Journal for Science and Engineering 47:5, pages 6049-6057.
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Fateh Mebarek-Oudina, Hanane Laouira, Ahmed Kadhim Hussein, Mohamed Omri, Aissa Abderrahmane, Lioua Kolsi & Uddhaba Biswal. (2022) Mixed Convection inside a Duct with an Open Trapezoidal Cavity Equipped with Two Discrete Heat Sources and Moving Walls. Mathematics 10:6, pages 929.
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Muhammad Amer Qureshi, Shafqat Hussain & Muhammad Adil Sadiq. (2021) Numerical simulations of MHD mixed convection of hybrid nanofluid flow in a horizontal channel with cavity: Impact on heat transfer and hydrodynamic forces. Case Studies in Thermal Engineering 27, pages 101321.
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Muneer A. Ismael, Ahmed Kadhim Hussein, Fateh Mebarek-Oudina & Lioua Kolsi. (2020) Effect of Driven Sidewalls on Mixed Convection in an Open Trapezoidal Cavity With a Channel. Journal of Heat Transfer 142:8.
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F. Mebarek-Oudina, H. Laouira, A. Aissa, A. K. Hussein & M. El Ganaoui. (2020) Convection Heat Transfer Analysis in a Channel with an Open Trapezoidal Cavity: Heat Source Locations effect. MATEC Web of Conferences 330, pages 01006.
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Hanane Laouira, Fateh Mebarek‐Oudina, Ahmed K. Hussein, Lioua Kolsi, Amine Merah & Obai Younis. (2019) Heat transfer inside a horizontal channel with an open trapezoidal enclosure subjected to a heat source of different lengths. Heat Transfer—Asian Research 49:1, pages 406-423.
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A.S. Vishnu, G.P. Aravind, M. Deepu & R. Sadanandan. (2019) Effect of heat transfer on an angled cavity placed in supersonic flow. International Journal of Heat and Mass Transfer 141, pages 1140-1151.
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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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Walaa A. Sabbar, Muneer A. Ismael & Mujtaba Almudhaffar. (2018) Fluid-structure interaction of mixed convection in a cavity-channel assembly of flexible wall. International Journal of Mechanical Sciences 149, pages 73-83.
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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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S. Hussain, Sameh E. Ahmed & T. Akbar. (2017) Entropy generation analysis in MHD mixed convection of hybrid nanofluid in an open cavity with a horizontal channel containing an adiabatic obstacle. International Journal of Heat and Mass Transfer 114, pages 1054-1066.
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Gorg Abdelmassih, Anton Vernet & Jordi Pallares. (2016) Steady and unsteady mixed convection flow in a cubical open cavity with the bottom wall heated. International Journal of Heat and Mass Transfer 101, pages 682-691.
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AAYUSH K SHARMA, PALLAB S MAHAPATRA, NIRMAL K MANNA & KOUSHIK GHOSH. (2015) Mixed convection in a baffled grooved channel. Sadhana 40:3, pages 835-849.
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Krunal M. Gangawane, Ram P. Bharti & Surendra Kumar. (2015) Lattice Boltzmann analysis of natural convection in a partially heated open ended enclosure for different fluids. Journal of the Taiwan Institute of Chemical Engineers 49, pages 27-39.
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M. Goodarzi, M.R. Safaei, K. Vafai, G. Ahmadi, M. Dahari, S.N. Kazi & N. Jomhari. (2014) Investigation of nanofluid mixed convection in a shallow cavity using a two-phase mixture model. International Journal of Thermal Sciences 75, pages 204-220.
Crossref
M.M. Rahman, Hakan F. Öztop, R. Saidur, S. Mekhilef & Khaled Al-Salem. (2013) Finite element solution of MHD mixed convection in a channel with a fully or partially heated cavity. Computers & Fluids 79, pages 53-64.
Crossref
M.M. Rahman, Hakan F. Öztop, N.A. Rahim, R. Saidur, K. Al-Salem, N. Amin, M.A.H. Mamun & A. Ahsan. (2012) Computational analysis of mixed convection in a channel with a cavity heated from different sides. International Communications in Heat and Mass Transfer 39:1, pages 78-84.
Crossref
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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