Register | Login

Journal of Energy Research and Reviews

  • About
    • About the Journal
    • Submissions & Author Guideline
    • Accepted Papers
    • Editorial Policy
    • Editorial Board Members
    • Reviewers
    • Printed Hard copy
    • Subscription
    • Membership
    • Publication Ethics and Malpractice Statement
    • Digital Archiving
    • Contact
  • Archives
  • Indexing
  • Publication Charge
  • Submission
  • Testimonials
  • Announcements
Advanced Search
  1. Home
  2. Archives
  3. 2022 - Volume 12 [Issue 3]
  4. Original Research Article

Author Guidelines


Submit Manuscript


Editorial Board Member


Membership


Subscription


Temperature Dependence on Transient Hydrodynamic Gravity Driven Flow Down an Inclined Plane

  •   S. K. Ghosh

Journal of Energy Research and Reviews, Volume 12, Issue 3, Page 16-25
DOI: 10.9734/jenrr/2022/v12i3240
Published: 8 October 2022

  • View Article
  • Download
  • Cite
  • References
  • Statistics
  • Share

Abstract


Transient hydrodynamic gravity driven flow of a viscous incompressible fluid down an inclined plane occupying a semi-infinite region of space bounded by an infinite hot plate is studied. The effect of modified Froude number plays an important role in determining the flow situation. Exact solution is obtained by employing Laplace transform method. This problem is concerned with a car – following theory subjected to traffic flow with a decisive importance to a variation of depth with a slope leading to a flood wave. A reducible influence of a frictional drag has an active influence to the flow reversal characteristics with time variation satisfying the separation due to the existance of a modified Froude number. The stabitity of a roll wave is determined by the critical Froude number in a time varying flow. Numerical results of velocity distributions and frictional shear stress are depicted graphically for different values of flow parameters. Numerical results of a critical Froude number are presented in tables. Temperature analysis has been presented analytically with a view to point out the expression of Nusselt number at the plate.

Keywords:
  • Gravity driven flowq
  • modified froude number
  • traffic flow
  • flood wave
  • frictional drag
  • Laplace transform method
  • Full Article - PDF
  • Review History

How to Cite

Ghosh, S. K. (2022). Temperature Dependence on Transient Hydrodynamic Gravity Driven Flow Down an Inclined Plane. Journal of Energy Research and Reviews, 12(3), 16–25. https://doi.org/10.9734/jenrr/2022/v12i3240
  • ACM
  • ACS
  • APA
  • ABNT
  • Chicago
  • Harvard
  • IEEE
  • MLA
  • Turabian
  • Vancouver
  • Endnote/Zotero/Mendeley (RIS)
  • BibTeX

References

Ghosh SK. A note on unsteady hydromagnetic flow in a rotating channel permeated by an inclined magnetic field in the presence of an oscillator. Czech J Phys. 2001;51(8):799-804.

Ghosh SK, Bég OA, Zueco J, Prasad VR. Transient hydromagnetic flow in a rotating channel permeated by an inclined magnetic field with magnetic induction and Maxwell displacement current effects. Z Angew Math Phys (ZAMP). 2010;61(1):147-69.

Ghosh SK. Exploitation of universe with regard to controlled thermonuclear fusion reaction of the Sun. Int J Appl Mech Eng. 2007;12:571-3.

Ghosh SK. Dynamo mechanism of the Sun with reference to magnetohydrodynamic flows. World J Mech. 2014;04(4):112-5.

Ghosh SK. Transient MHD Couette flow in a rotating environment permeated by an inclined magnetic field by means of a traveling magnetic field subject to a forced oscillation. World J Mech. 2018;08(9): 362-77.

Whitham GB. Linear and Nonlinear waves, A Wiley. New York: Interscience publication. Wiley. 1974;68-95.

Balmforth NJ, Craster RV, Sassi R. Shallow viscoplastic flow on an inclined plane. J Fluid Mech. 2002;470:1-29.

Chamkha AJ, Issa C, Khanafer K. Natural convection from an inclined plate embedded in a variable porous medium due to solar radiation. Int J Therm Sci. 2002;41(1):73-81.

Chen TS, Yuh CF, Moutsoglou A. Combined heat and mass transfer in mixed convection along vertical and inclined plates. Int J Heat Mass Transf. 1980;23(4):527-37.

Chen TS, Tien HC, Armaly BF. Natural convection on horizontal, inclined and vertical plates with variable surface temperature or heat flux. Int J Heat Mass Transf. 1986;29(10):1465-78.

Fan J, Shah LJ, Furbo S. Flow distribution in a solar collector panel with horizontally inclined absorber strips. Sol Energy. 2007;81(12):1501-11.

Fujii T, Imura H. Natural convection heat transfer from a plate with arbitrary inclination. Int J Heat Mass Transf. 1972;15(4):755-67.

Gudhe R, Rajagopal KR, Massoudi M. Fully developed flow of granular materials down a heated inclined plane. Acta Mech. 1994;103(1-4):63-78.

Ghosh SK, Pop I. A new approach on MHD natural convection boundary layer flow past a flat plate of finite dimensions. Heat Mass Transfer. 2006;42(7): 587-95.

Anwar Beg O, Ghosh SK, Narahari M, Beg TA. Mathematical modeling on thermal radiation effects on transient gravity driven optically thick gray convection flow along an inclined plane with pressure gradient. Chem Eng Commun. 2011;1998:1630-44.

Biswas R, Hossain MS, Afikuzzaman M, Ahmmed SF. Computational treatment of MHD Maxwell nanofluid flow across a stretching sheet considering higher-order chemical reaction and thermal radiation. J Comp Math Data Sci. 2022;4.

Ahmmed SF, Biswas R, Afikuzzaman M. Unsteady magnetohydrodynamic free convection flow of nanofluid through an exponentially accelerated inclined plate embedded in a porous medium with variable thermal conductivity in the presence of radiation. J Nanofluids. 2018;7(5):891-901.

Biswas R, Ahmmed SF. Effects of Hall current and chemical reaction on MHD unsteady heat and mass transfer of Casson nanofluid flow through a vertical plate. J Heat Transf. 2018;140(9): 140/092402-1.

Biswas R, Afikuzzaman M, Mondal, Ahmmed SF. MHD free convection and heat transfer flow through a vertical porous plate in the presence of chemical reaction. Front Heat Mass Transf (FHMT). 2018;11:13.

Mondal M, Biswas R, Hasan M, Bulbul MF, Ahmmed SF. Soret effect on MHD unsteady heat and mass transfer of Prandtl fluid flow past an exponentially vertical plate. Model Meas Control B. 2019;88(2-4):57-63.

Biswas R, Hasan M, Rana J, Ahmmed SF. MHD free convection Maxwell nanofluid flow through an exponentially accelerated vertical surface in the presence of radiation. AIP Conf Proc. 2019;2121:030007.

Biswas R, Mondal M, Islam A. A steady MHD natural convection heat transfer fluid flow through a vertical surface in the existence of Hall current and radiation. Instrum Mesure Métrologie. 2019;2:331-56.

Ahmmed SF, Biswas R. Effects of radiation and chemical reaction on MHD unsteady heat and mass transfer of nanofluid flow through a vertical plate. Model Meas Control B. 2018;87(4):213-20.

Taibur Rahaman Md, Suma UK, Katun M, Rafiqul Islam Md, Biswas R. Biometric iris recognition based on Dubechies wavelet transform. Asian J Pure Appl Math. 2022;4(3):318-28.

Gazi MA, Suma UK, Katun M, Taibur Rahaman Md, Ahmmed SF, Biswas R. A numerical evolution of MHD Maxwell fluid flow through an isothermal radiated stretching sheet with higher order chemical reaction. Asian J Pure Appl Math. 2022;4(3):329-53.

Katun M, Taibur Rahaman Md, Rajib Hossain Md, Suma UK, Biswas R. A numerical review: computational approach of heat and mass transfer Casson nanofluid flow through a vertical isothermal cylinder. Asian J Res Biosci. 2022;4(2):98-108.

  • Abstract View: 170 times
    PDF Download: 67 times

Download Statistics

Downloads

Download data is not yet available.
  • Linkedin
  • Twitter
  • Facebook
  • WhatsApp
  • Telegram
Make a Submission

Information

  • For Readers
  • For Authors
  • For Librarians

Current Issue

  • Atom logo
  • RSS2 logo
  • RSS1 logo


Copyright © 2010 - 2023 Journal of Energy Research and Reviews. All rights reserved.