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Original Articles

Influence of Heater Aspect Ratio on Natural Convection in a Rectangular Enclosure

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Read on this site (10)

Abhinav Saha, Nirmalendu Biswas, Nirmal K. Manna & Koushik Ghosh. (2023) Impact of Linear Heating Profiles on Nanofluidic Convection in Enclosure. Heat Transfer Engineering 0:0, pages 1-19.
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Saadoun Boudebous & Nawal Ferroudj. (2023) Irreversibility Distribution Ratio Used in Entropy Generation Equation for Convective Flows Re-visited. Heat Transfer Engineering 0:0, pages 1-20.
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Mouna Touiker, Abderrahim Bourouis, Abdeslam Omara & Rabah Bouchair. (2023) Thermosolutal natural convection cooling process of a thermal source inside a partially porous cavity. International Journal for Computational Methods in Engineering Science and Mechanics 24:3, pages 193-210.
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Francesco Corvaro, Barbara Marchetti & Matteo Vitali. (2023) Validation of Velocity Field Measured with Particle Image Velocimetry of a Partially Heated Cavity. Heat Transfer Engineering 44:2, pages 141-153.
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Milan K. Mondal, Nirmalendu Biswas, Dipak Kumar Mandal, Nirmal K. Manna & Ali J. Chamkha. (2022) Assessment of thermal performance of hybrid nanofluid flow in a tilted porous enclosure by imposing partial magnetic fields. Waves in Random and Complex Media 0:0, pages 1-34.
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Abderrahim Bourouis, Abdeslam Omara & Said Abboudi. (2021) Natural Convection From a Thermal Source Surrounded by a Porous Layer. Heat Transfer Engineering 42:5, pages 431-452.
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Fu-Yun Zhao, Lin Li, Di Liu, Jiang-Tao Hu & Han-Qing Wang. (2018) Thermal and Moisture Transport Inhibitions in a Moist Air Saturated Enclosure Attached with Protruding Partitions for Built Energy Conservations. Heat Transfer Engineering 39:20, pages 1727-1748.
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Khamis S. Al Kalbani, Mohammad M. Rahman, Shariful Alam, Nasser Al-Salti & Ibrahim A. Eltayeb. (2018) Buoyancy Induced Heat Transfer Flow Inside a Tilted Square Enclosure Filled with Nanofluids in the Presence of Oriented Magnetic Field. Heat Transfer Engineering 39:6, pages 511-525.
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Nirmal K. Manna, Nirmalendu Biswas, Dipak Kumar Mandal & Chandan Kumar Yadav. Steady and Unsteady Dynamics of Magneto-Nanofluidic Flow in a Bottom-Heated Top-Cooled Recto-Triangular Thermal System. Heat Transfer Engineering 0:0, pages 1-21.
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Anish Pal, Riddhideep Biswas, Sourav Sarkar, Aranyak Chakravarty & Achintya Mukhopadhyay. Influence of the Switch-Over Period of an Alternately Active Bi-Heater on Heat Transfer Enhancement Inside a Cavity. Heat Transfer Engineering 0:0, pages 1-14.
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Articles from other publishers (39)

Dipak Kumar Mandal, Milan K. Mondal, Nirmalendu Biswas, Nirmal K. Manna, Khaled Al-Farhany, Asish Mitra & Ali J. Chamkha. (2024) Convective heat transport in a porous wavy enclosure: nonuniform multi-frequency heating with hybrid nanofluid and magnetic field. Heliyon, pages e29846.
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Mani Sankar, P. Ravindra, Mahesha, Oluwole Daniel Makinde & R. Sivaraj. (2024) FINITE DIFFERENCE METHOD BASED-NUMERICAL SIMULATIONS AND CAVITY TILTING ANALYSIS ON MAGNETOCONVECTION IN AN INCLINED PARALLELOGRAMMIC POROUS ENCLOSURE. Journal of Porous Media 27:3, pages 21-44.
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Shinjini Das, Anwesha Das, Shirsa Nandy, Nirmal K. Manna, Nirmalendu Biswas & Aparesh Datta. (2024) Magnetohydrodynamic thermal convection in constraint-based recto-triangular cavities with CuO-water nanofluid and differential bottom-top heating. Thermal Science and Engineering Progress 47, pages 102297.
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Shafqat Hussain, Hakan F. Öztop, Abdelraheem M. Aly & Nidal H. Abu-Hamdeh. (2023) Analysis of effects of moving wall direction in a one sided semi-circular porous cavity on mixed magneto-bioconvection in the presence of hybrid nanofluid with oxytactic bacteria. Journal of Magnetism and Magnetic Materials 583, pages 171038.
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Dipak Kumar Mandal, Milan K. Mondal, Nirmalendu Biswas, Nirmal K. Manna & Ali J. Chamkha. (2023) Partial magnetic field and segmental heating effects on hybrid nanofluidic convection in a tilted porous wavy cavity. Journal of Magnetism and Magnetic Materials 583, pages 171035.
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Hani Boussenah, Abderrahim Bourouis, Abdeslam Omara & Mohamed Kezzar. (2023) Passive heating process enhancement of a new structure room using porous‐covering heat‐emitting channels. Heat Transfer 52:6, pages 4109-4136.
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Nirmalendu Biswas, Dipak Kumar Mandal, Nirmal K. Manna, Rama S.R. Gorla & Ali J. Chamkha. (2023) Hybridized nanofluidic convection in umbrella-shaped porous thermal systems with identical heating and cooling surfaces. International Journal of Numerical Methods for Heat & Fluid Flow 33:9, pages 3164-3201.
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Milan K. Mondal, Dipak Kumar Mandal, Nirmalendu Biswas, Nirmal K. Manna, Khaled Al-Farhany & Ali J. Chamkha. (2023) Enhanced magneto-convective heat transport in porous hybrid nanofluid systems with multi-frequency nonuniform heating. Journal of Magnetism and Magnetic Materials 577, pages 170794.
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Milan K. Mondal, Nirmalendu Biswas, Aparesh Datta, Dipak Kumar Mandal & Nirmal K. Manna. (2023) Magneto-hydrothermal convective dynamics of hybrid nanofluid-packed partially cooled porous cavity: effect of half-sinusoidal heating. Journal of Thermal Analysis and Calorimetry 148:9, pages 3903-3928.
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Dipak Kumar Mandal, Nirmalendu Biswas, Nirmal K. Manna, Rama Subba Reddy Gorla & Ali J. Chamkha. (2022) Hybrid nanofluid magnetohydrodynamic mixed convection in a novel W-shaped porous system. International Journal of Numerical Methods for Heat & Fluid Flow 33:2, pages 510-544.
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Deep Chatterjee, Nirmalendu Biswas, Nirmal K. Manna & Sandip Sarkar. (2023) Effect of discrete heating-cooling on magneto-thermal-hybrid nanofluidic convection in cylindrical system. International Journal of Mechanical Sciences 238, pages 107852.
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Nirmalendu Biswas, Dipak Kumar Mandal, Nirmal K. Manna & Ali Cemal Benim. (2023) Enhanced energy and mass transport dynamics in a thermo-magneto-bioconvective porous system containing oxytactic bacteria and nanoparticles: cleaner energy application. Energy 263, pages 125775.
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Khaled Said, Ahmed Ouadha & Amina Sabeur. (2022) CFD‐based analysis of entropy generation due to mean and fluctuating fields during turbulent natural convection in a square enclosure. Heat Transfer 52:1, pages 60-92.
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Nirmalendu Biswas, Dipak Kumar Mandal, Nirmal K. Manna & Ali Cemal Benim. (2022) Magneto-hydrothermal triple-convection in a W-shaped porous cavity containing oxytactic bacteria. Scientific Reports 12:1.
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Dipak Kumar Mandal, Nirmalendu Biswas, Nirmal K. Manna, Rama Subba Reddy Gorla & Ali J. Chamkha. (2022) Magneto-hydrothermal performance of hybrid nanofluid flow through a non-Darcian porous complex wavy enclosure. The European Physical Journal Special Topics 231:13-14, pages 2695-2712.
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Shafqat Hussain, Muhammad Zeeshan & Dur-e-Shehwar Sagheer. (2022) Irreversibility analysis for the natural convection of Casson fluid in an inclined porous cavity under the effects of magnetic field and viscous dissipation. International Journal of Thermal Sciences 179, pages 107699.
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Marcello Lappa & Wasim Waris. (2022) On the role of heat source location and multiplicity in topographically controlled Marangoni–Rayleigh–Bénard convection. Journal of Fluid Mechanics 939.
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Dipak Kumar Mandal, Milan Kumar Mondal, Nirmalendu Biswas, Nirmal K. Manna, Rama Subba Reddy Gorla & Ali J. Chamkha. (2021) Nanofluidic thermal-fluid transport in a split-driven porous system working under a magnetic environment. International Journal of Numerical Methods for Heat & Fluid Flow 32:7, pages 2543-2569.
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Nirmalendu Biswas, Milan K. Mondal, Nirmal K. Manna, Dipak Kumar Mandal & Ali J. Chamkha. (2022) Implementation of partial magnetic fields to magneto-thermal convective systems operated using hybrid-nanoliquid and porous media. Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science 236:10, pages 5687-5704.
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Dipak Kumar Mandal, Nirmalendu Biswas, Nirmal K. Manna, Dilip Kumar Gayen, Rama Subba Reddy Gorla & Ali J. Chamkha. (2022) Thermo-fluidic transport process in a novel M-shaped cavity packed with non-Darcian porous medium and hybrid nanofluid: Application of artificial neural network (ANN). Physics of Fluids 34:3.
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Milan K. Mondal, Nirmalendu Biswas, Aparesh Datta, Bikash K. Sarkar & Nirmal K. Manna. (2022) Positional impacts of partial wall translations on hybrid nanofluid flow in porous media: Real Coded Genetic Algorithm (RCGA). International Journal of Mechanical Sciences 217, pages 107030.
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Nirmalendu Biswas, Milan K. Mondal, Dipak Kumar Mandal, Nirmal K. Manna, Rama Subba Reddy Gorla & Ali J. Chamkha. (2022) A narrative loom of hybrid nanofluid-filled wavy walled tilted porous enclosure imposing a partially active magnetic field. International Journal of Mechanical Sciences 217, pages 107028.
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Rabah Bouchair, Abderrahim Bourouis & Abdeslam Omara. (2021) Natural convection cooling process from two identical porous‐covering electronic components. Heat Transfer 51:2, pages 1830-1854.
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Milan K. Mondal, Nirmalendu Biswas, Aparesh Datta, Dipak K. Mandal & Nirmal K. Manna. (2022) Thermofluidic transport phenomena of hybrid nanofluid in a porous wavy enclosure imposing magnetic fields. Materials Today: Proceedings 52, pages 505-512.
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Marcello Lappa, Aydin Sayar & Wasim Waris. (2021) Topographically Controlled Marangoni-Rayleigh-Bénard Convection in Liquid Metals. Fluids 6:12, pages 447.
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Dipak Kumar Mandal, Nirmalendu Biswas, Nirmal K. Manna, Rama Subba Reddy Gorla & Ali J. Chamkha. (2021) Role of surface undulation during mixed bioconvective nanofluid flow in porous media in presence of oxytactic bacteria and magnetic fields. International Journal of Mechanical Sciences 211, pages 106778.
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Nirmal K. Manna & Nirmalendu Biswas. (2021) Magnetic force vectors as a new visualization tool for magnetohydrodynamic convection. International Journal of Thermal Sciences 167, pages 107004.
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Suvash C. Saha, Ali M. Sefidan, Atta Sojoudi & Mohammad M. Molla. (2021) Transient Free Convection and Heat Transfer in a Partitioned Attic-Shaped Space under Diurnal Thermal Forcing. Energy Engineering 118:3, pages 487-506.
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U. K. Sarkar, Nirmalendu Biswas & Hakan F. Öztop. (2021) Multiplicity of solution for natural convective heat transfer and entropy generation in a semi-elliptical enclosure. Physics of Fluids 33:1.
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Nirmalendu Biswas, U. K. Sarkar, Ali J. Chamkha & Nirmal Kumar Manna. (2020) Magneto-hydrodynamic thermal convection of Cu–Al2O3/water hybrid nanofluid saturated with porous media subjected to half-sinusoidal nonuniform heating. Journal of Thermal Analysis and Calorimetry 143:2, pages 1727-1753.
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Ashley A. Mason & R. Harish. (2020) Turbulent thermal characteristics and air flow patterns in a naturally ventilated tunnel with roof openings. Journal of Physics: Conference Series 1716:1, pages 012026.
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CHANDRACHUR HAZRA, NIRMALENDU BISWAS & NIRMAL K. MANNA. (2020) Thermal magneto-hydrodynamics in a ventilated porous enclosure. Sādhanā 45:1.
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Marcello Lappa. (2019) On the highly unsteady dynamics of multiple thermal buoyant jets in cross flows. Physics of Fluids 31:11.
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Nirmal Kumar Manna, Nirmalendu Biswas & Pallab Sinha Mahapatra. (2019) Convective heat transfer enhancement: effect of multi-frequency heating. International Journal of Numerical Methods for Heat & Fluid Flow 29:10, pages 3822-3856.
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R. Harish. (2018) Buoyancy driven turbulent plume induced by protruding heat source in vented enclosure. International Journal of Mechanical Sciences 148, pages 209-222.
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Mohamed Ammar Abbassi & Jamel Orfi. (2018) Effects of Magnetohydrodynamics on Natural Convection and Entropy Generation with Nanofluids. Journal of Thermophysics and Heat Transfer 32:4, pages 1059-1071.
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R. Harish. (2018) Effect of heat source aspect ratio on turbulent thermal stratification in a naturally ventilated enclosure. Building and Environment 143, pages 473-486.
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Igor Miroshnichenko, Mikhail Sheremet & Ali J. Chamkha. (2018) Turbulent natural convection combined with surface thermal radiation in a square cavity with local heater. International Journal of Numerical Methods for Heat & Fluid Flow 28:7, pages 1698-1715.
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K. Kalidasan & P. Rajesh Kanna. (2017) Natural convection on an open square cavity containing diagonally placed heaters and adiabatic square block and filled with hybrid nanofluid of nanodiamond - cobalt oxide/water. International Communications in Heat and Mass Transfer 81, pages 64-71.
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