Natural Convection Heat Transfer of Supercritical Helium in a Channel.
Hideaki Mori, H. Ogata
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ABSTRACT The objective of the current research is to characterize the thermal performance in micropolar fluid flows on a vertically elongated porous sheet in the presence of buoyancy forces. Thus, the motivation of this study is to improve the understanding of buoyancy‐driven micropolar fluid flows through porous media, which are relevant to advanced ...
T. Venu, MD. Shamshuddin, S. O. Salawu
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Effect of dual-rotation on MHD natural convection of NEPCM in a hexagonal-shaped cavity based on time-fractional ISPH method. [PDF]
Raizah Z, Aly AM.
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1002 The effect of natural convection on coaxial tube ground heat exchanger using foundation pile
Koutaro Tsubaki +2 more
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ABSTRACT The hybrid nanofluid integrated with micropolar fluid shows growing interest due to the enhanced thermal performance in microscale devices. These improved properties are due to their greater thermal conductivity and rotational effects. The proposed study assesses the significance of velocity slip on the flow characteristic of micropolar ...
P. P. Nayak +3 more
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Numerical investigation of viscoplastic fluids on natural convection in open cavities with solid obstacles. [PDF]
Santos PRM, Franco AT, Junqueira SLM.
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Experimental Research and Development on the Natural Convection of Suspensions of Nanoparticles-A Comprehensive Review. [PDF]
Murshed SMS +3 more
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Numerical Simulations of Magnetohydrodynamics Natural Convection and Entropy Production in a Porous Annulus Bounded by Wavy Cylinder and Koch Snowflake Loaded with Cu-Water Nanofluid. [PDF]
Mourad A +4 more
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ABSTRACT This study analyzes the influence of Arrhenius activation energy on the chemically reactive, magnetohydrodynamic Casson hybrid nanofluid flow past an exponentially stretching surface embedded in a Darcy–Forchheimer porous medium with a non‐uniform heat source/sink.
Md. Sailanebaba +2 more
wiley +1 more source
Simulation of Natural Convection with Sinusoidal Temperature Distribution of Heat Source at the Bottom of an Enclosed Square Cavity. [PDF]
Zeng M, Wang Z, Xu Y, Ma Q.
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