[HTML][HTML] Entropy generation analysis of different nanofluid flows in the space between two concentric horizontal pipes in the presence of magnetic field: single-phase …

P Barnoon, D Toghraie, F Eslami… - Computers & Mathematics …, 2019 - Elsevier
In this paper, entropy generation analysis of different nanofluid flows in the space between
two concentric horizontal pipes in the presence of magnetic field by using of single-phase …

Entropy generation during Al2O3/water nanofluid flow in a solar collector: Effects of tube roughness, nanoparticle size, and different thermophysical models

O Mahian, A Kianifar, AZ Sahin… - International Journal of …, 2014 - Elsevier
In this paper, an analytical study is performed on the entropy generation and heat transfer
due to nanofluid flow in a flat plate solar collector. The working fluid considered in this work …

Effects of thermal radiation parameter and magnetic field on the peristaltic motion of Williamson nanofluids in a tapered asymmetric channel

M Kothandapani, J Prakash - International Journal of Heat and Mass …, 2015 - Elsevier
This paper deals with a theoretical investigation of the peristaltic transport of a Williamson
nanofluid in a tapered asymmetric channel under the action of a thermal radiation …

Entropy generation analysis of a nanofluid flow in MHD porous microchannel with hydrodynamic slip and thermal radiation

G Ibáñez, A López, J Pantoja, J Moreira - International Journal of Heat and …, 2016 - Elsevier
Combined effects of hydrodynamic slip, magnetic field, suction/injection, thermal radiation,
nanoparticle volume fraction and convective boundary conditions on the heat transfer and …

Entropy analysis of nanofluid convection in a heated porous microchannel under MHD field considering solid heat generation

SR Hosseini, M Ghasemian, M Sheikholeslami… - Powder technology, 2019 - Elsevier
Present study analyzes the issue of entropy generation of water with Al 2 O 3 nanoparticles
in a horizontal porous microchannel heated symmetrically. 2D distribution of temperature in …

Optimization of MHD nanofluid flow in a vertical microchannel with a porous medium, nonlinear radiation heat flux, slip flow and convective–radiative boundary …

G Ibáñez, A López, I López, J Pantoja, J Moreira… - Journal of Thermal …, 2019 - Springer
The optimization of a magnetohydrodynamic flow of Al 2 O 3–water nanofluid was carried
out numerically considering the combined effects of various parameters such as porous …

Heat and mass transfer through a porous media of MHD flow of nanofluids with thermal radiation, viscous dissipation and chemical reaction effects

E Haile, B Shankar - American Chemical Science Journal, 2014 - eprints.ditdo.in
The flow problem presented in the paper is a study on boundary layer flow of a nanofluid
through a porous medium subjected to a magnetic field, thermal radiation, viscous …

Designing a microchannel heat sink with colloidal coolants through the entropy generation minimisation criterion and global optimisation algorithms

JM Cruz-Duarte, A Garcia-Perez… - Applied Thermal …, 2016 - Elsevier
This article presents an alternative approach for the design of a heat sink as a solution of the
thermal management problem in microelectronic components. The design was carried out …

Effect of slip and convective boundary conditions on entropy generation in a porous channel due to micropolar fluid flow

D Srinivasacharya, K Himabindu - International Journal of Nonlinear …, 2018 - degruyter.com
This article presents the effect of convective heating and velocity slip on flow generation of
an incompressible micropolar fluid through a porous channel. The flow is induced by a …

Analysis of entropy generation due to micropolar fluid flow in a rectangular duct subjected to slip and convective boundary conditions

D Srinivasacharya… - Journal of Heat …, 2017 - asmedigitalcollection.asme.org
The entropy generation due to steady, incompressible micropolar fluid flow in a rectangular
duct with slip and convective boundary conditions (CBCs) is calculated. An external uniform …