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  1. Journal of the Brazilian Society of Mechanical Sciences and Engineering
  2. Journal of the Brazilian Society of Mechanical Sciences and Engineering : Volume 36
  3. Journal of the Brazilian Society of Mechanical Sciences and Engineering : Volume 36, Issue 4, October 2014
  4. Mixed convective peristaltic transport in a vertical channel with Robin’s condition
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Journal of the Brazilian Society of Mechanical Sciences and Engineering : Volume 40
Journal of the Brazilian Society of Mechanical Sciences and Engineering : Volume 39
Journal of the Brazilian Society of Mechanical Sciences and Engineering : Volume 38
Journal of the Brazilian Society of Mechanical Sciences and Engineering : Volume 37
Journal of the Brazilian Society of Mechanical Sciences and Engineering : Volume 36
Journal of the Brazilian Society of Mechanical Sciences and Engineering : Volume 36, Issue 4, October 2014
Numerical simulation of pulverized wet coal combustion using detailed chemical kinetics
Analysis of syngas formation and ecological efficiency for the system of treating biomass waste and other solid fuels with CO$_{2}$ recuperation based on integrated gasification combined cycle with diesel engine
Mixed convective peristaltic transport in a vertical channel with Robin’s condition
Determining of the hydrodynamic forces on the multi-hull tunnel vessel in steady motion
Three-dimensional finite element method for rotating disk flows
The feedback effect caused by bed load on a turbulent liquid flow
A comparison of Fourier pseudospectral method and finite volume method used to solve the Burgers equation
Numerical and experimental study of a jet in a crossflow for different velocity ratio
Influence of the cutting edge micro-geometry of PCBN tools on the flank wear in orthogonal quenched and tempered turning M2 steel
Correlating tool wear, surface roughness and corrosion resistance in the turning process of super duplex stainless steel
Influence of the manufacturing process in performance concerning wear of total hip prostheses
Experimental investigation of hole quality during reaming applications using multi-blade tools
Investigations into the surface quality and micro-hardness in the ultrasonic machining of titanium (ASTM GRADE-1)
Numerical investigation of the heat transfer enhancement using various viscosity models in chamber filled with water–CuO nanofluid
Numerical simulation of filling process of natural gas onboard vehicle cylinder ( Journal of the Brazilian Society of Mechanical Sciences and Engineering , Volume 36 , Issue 4 )
Modeling heat transfer with micro-scale natural convection in fibrous insulation
An integration of TRIZ and the systematic approach of Pahl and Beitz for innovative conceptual design process
DTW: a design method for designing robot end-effectors
Orthotropic material models for the nonlinear analysis of structural membranes
A method for reduction of uncertainties in reservoir model using observed data: application to a complex case
Automatic history matching considering surrogate-based optimization and Karhunen–Loève expansions
Torque for an electromechanical integrated harmonic piezodrive system
Effect of interfacial powder on mechanical properties of composites under dynamic tests
Non-Newtonian nanofluid free convection flow subject to mixed thermal boundary conditions about a vertical cone
Journal of the Brazilian Society of Mechanical Sciences and Engineering : Volume 36, Issue 3, May 2014
Journal of the Brazilian Society of Mechanical Sciences and Engineering : Volume 36, Issue 2, February 2014
Journal of the Brazilian Society of Mechanical Sciences and Engineering : Volume 36, Issue 1, January 2014
Journal of the Brazilian Society of Mechanical Sciences and Engineering : Volume 35

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Mixed convective peristaltic transport in a vertical channel with Robin’s condition

Content Provider SpringerLink
Author Alsulami, Hamed H. Hayat, T. Asghar, S. Hussain, Q.
Copyright Year 2013
Abstract This paper describes the mechanism of the mixed convective peristaltic flow of a viscous fluid in an asymmetric vertical channel. A new type of boundary conditions is introduced in which one wall is kept at a constant temperature, while a convective heat flux is taken on the other wall. The Boussinesq’s and long wavelength approximations are employed in the process of modelling. The problems associated with the fluid motion and heat transfer are solved and exact solutions have been obtained in the wave frame of reference. Effects of Biot number, Grashof number and source/sink parameter have been analyzed through graphs. It is observed that increasing Biot number decreases the temperature, whereas temperature increases with an increase in the values of source/sink parameter. The pressure drop decreases with ascending values of Biot number and descending values of source/sink parameter and Grashof number. The pressure gradient is less in magnitude in absence of buoyancy forces, convective heat exchange at the boundary and source/sink. An increase in Biot number and a decrease in source/sink parameter and Grashof number results an increase in the size of the left part of the bolus.
Starting Page 681
Ending Page 695
Page Count 15
File Format PDF
ISSN 16785878
Journal Journal of the Brazilian Society of Mechanical Sciences and Engineering
Volume Number 36
Issue Number 4
e-ISSN 18063691
Language English
Publisher Springer Berlin Heidelberg
Publisher Date 2013-09-17
Publisher Place Berlin, Heidelberg
Access Restriction One Nation One Subscription (ONOS)
Subject Keyword Heat source/sink Peristalsis Robin’s condition Mechanical Engineering Mixed convection Heat transfer
Content Type Text
Resource Type Article
Subject Applied Mathematics Industrial and Manufacturing Engineering Automotive Engineering Mechanical Engineering Aerospace Engineering
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