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An exhaustive review of studies on natural convection in enclosures with and without internal bodies of various shapes
Natural convection has been extensively studied due to its presence in many engineering
applications. It is one of the most important modes of heat transfer and arises due to …
applications. It is one of the most important modes of heat transfer and arises due to …
A review on experimental research using scale models for buildings: Application and methodologies
A complete review on scale model testing for buildings, considering a wide range of
methodologies and new manufacturing techniques, in areas such as statics and dynamics …
methodologies and new manufacturing techniques, in areas such as statics and dynamics …
MHD double-diffusive mixed convection and entropy generation of nanofluid in a trapezoidal cavity
Abstract Double diffusive, Magnetohydrodynamics (MHD), mixed convection flow of A l 2 O 3-
water nanofluid inside a trapezoidal enclosure with discrete heat and mass source at the …
water nanofluid inside a trapezoidal enclosure with discrete heat and mass source at the …
Effect of magnetic field on natural convection flow in a liquid gallium filled square cavity for linearly heated side wall (s)
M Sathiyamoorthy, A Chamkha - International Journal of Thermal Sciences, 2010 - Elsevier
A numerical study is presented for natural convection flow of electrically conducting liquid
gallium in a square cavity. In the cavity, the bottom wall is uniformly heated and the left …
gallium in a square cavity. In the cavity, the bottom wall is uniformly heated and the left …
[HTML][HTML] A case study on entropy generation in MHD nanofluid flow in L-shaped triangular corrugated permeable enclosure
Enclosure with irregular boundaries by providing surface corrugations is considered an
efficient strategy to elevate the heat transfer mechanism in laser technology, cooling of …
efficient strategy to elevate the heat transfer mechanism in laser technology, cooling of …
MHD natural convection in a partially open trapezoidal cavity filled with a nanofluid
A numerical study of natural convection in a partially open trapezoidal cavity filled with a
CuO nanofluid under the effect of uniform magnetic field of various orientations has been …
CuO nanofluid under the effect of uniform magnetic field of various orientations has been …
Lattice Boltzmann numerical simulation and entropy generation analysis of natural convection of nanofluid in a porous cavity with different linear temperature …
In this paper, natural convection in a porous cavity filled with Cu-water nanofluid is
investigated using Lattice Boltzmann method (LBM). Horizontal walls of the cavity are …
investigated using Lattice Boltzmann method (LBM). Horizontal walls of the cavity are …
Lattice Boltzmann simulation of MHD natural convection in a nanofluid-filled cavity with linear temperature distribution
A Mahmoudi, I Mejri, MA Abbassi, A Omri - Powder Technology, 2014 - Elsevier
This paper examines the natural convection in a square enclosure filled with a water–Al 2 O
3 nanofluid and is subjected to a magnetic field. The bottom wall is uniformly heated and …
3 nanofluid and is subjected to a magnetic field. The bottom wall is uniformly heated and …
Buoyancy-driven heat transfer enhancement in a sinusoidally heated enclosure utilizing hybrid nanofluid
The purpose of this work is to study numerically heat transfer and fluid flow characteristics by
natural convection in an enclosure filled with Al 2 O 3/water nanofluid and Cu-Al 2 O 3/water …
natural convection in an enclosure filled with Al 2 O 3/water nanofluid and Cu-Al 2 O 3/water …
Natural convection in a rectangular enclosure with sinusoidal temperature distributions on both side walls
QH Deng, JJ Chang - Numerical Heat Transfer, Part A: Applications, 2008 - Taylor & Francis
A two-dimensional steady and laminar natural convection in an air-filled (Pr= 0.7)
rectangular enclosure is investigated numerically. The horizontal walls are thermally …
rectangular enclosure is investigated numerically. The horizontal walls are thermally …