年間 12 号発行
ISSN 印刷: 1091-028X
ISSN オンライン: 1934-0508
Indexed in
LIE GROUP ANALYSIS OF RADIATION NATURAL CONVECTION FLOW OVER AN INCLINED SURFACE IN A POROUS MEDIUM WITH INTERNAL HEAT GENERATION
要約
Lie group analysis is performed to study the heat transfer characteristics of the radiation natural convection flow of a heat generating fluid over a semi-infinite inclined surface embedded in a porous medium. The governing partial differential equations are transformed into a system of ordinary differential equations using scaling symmetries. The resulting system is solved numerically using a fourth-order Runge−Kutta method with the shooting technique. It is found that both the velocity and temperature increase significantly when the value of the heat generation parameter increases. The velocity increases and the temperature decreases with the increase in the porosity parameter. The thermal and momentum boundary layer thicknesses decrease when increasing the conduction−radiation parameter The local Nusselt number increases with the porosity and conduction−radiation parameter.
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Hari Niranjan, Sivasankaran S, Bhuvaneswari M, Siri Zailan, Effects of chemical reaction on MHD mixed convection stagnation point flow toward a vertical plate in a porous medium with radiation and heat generation, Journal of Physics: Conference Series, 662, 2015. Crossref
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Kasmani Ruhaila Md, Sivasankaran S., Bhuvaneswari M., Siri Zailan, Effect of thermal radiation and suction on convective heat transfer of nanofluid along a wedge in the presence of heat generation/absorption, 1682, 2015. Crossref
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Niranjan H., Sivasankaran S., Bhuvaneswari M., Analytical and Numerical Study on Magnetoconvection Stagnation-Point Flow in a Porous Medium with Chemical Reaction, Radiation, and Slip Effects, Mathematical Problems in Engineering, 2016, 2016. Crossref
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Sivasankaran S., Niranjan H., Bhuvaneswari M., Chemical reaction, radiation and slip effects on MHD mixed convection stagnation-point flow in a porous medium with convective boundary condition, International Journal of Numerical Methods for Heat & Fluid Flow, 27, 2, 2017. Crossref
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Che Ghani Nor Artisham, Siri Zailan, MHD flow of Carreau nanofluid over a stretching surface with suction/injection and slip effects by using Haar wavelet quasilinearization method, Journal of Physics: Conference Series, 1139, 2018. Crossref
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Karthikeyan S., Bhuvaneswari M., Sivasankaran S., Rajan S., Cross diffusion, radiation and chemical reaction effects on MHD combined convective flow towards a stagnation-point upon vertical plate with heat generation, IOP Conference Series: Materials Science and Engineering, 390, 2018. Crossref
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Sivasankaran S., Alrashidy Sattam S., Alshomrani Ali S., Analytical study on mixed double diffusive convection in a vertical wavy porous channel with chemical reaction and Soret effect, Journal of Physics: Conference Series, 1139, 2018. Crossref
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Bhuvaneswari M., Sivasankaran S., Convective Mass and Heat Transfer of a Chemically Reacting Fluid in a Porous Medium with Cross Diffusion Effects and Convective Boundary, in Flow and Transport in Subsurface Environment, 2018. Crossref
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Eswaramoorthi S, Sivasankaran S, Alshomrani Ali Saleh, Effect of chemical reaction and heat generation on 3D double diffusive convection over a stretching plate: Numerical and analytical study, Journal of Physics: Conference Series, 1139, 2018. Crossref
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Loganathan K., Sivasankaran S., Bhuvaneswari M., Rajan S., Second-order slip, cross-diffusion and chemical reaction effects on magneto-convection of Oldroyd-B liquid using Cattaneo–Christov heat flux with convective heating, Journal of Thermal Analysis and Calorimetry, 136, 1, 2019. Crossref
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Bhuvaneswari M., Sivasankaran S., Karthikeyan S., Rajan S., Stratification and Cross Diffusion Effects on Magneto-Convection Stagnation-Point Flow in a Porous Medium with Chemical Reaction, Radiation, and Slip Effects, in Applied Mathematics and Scientific Computing, 2019. Crossref
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Malarselvi A., Bhuvaneswari M., Sivasankaran S., Ganga B., Abdul Hakeem A. K., Effect of Slip and Convective Heating on Unsteady MHD Chemically Reacting Flow Over a Porous Surface with Suction, in Applied Mathematics and Scientific Computing, 2019. Crossref
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Malarselvi A., Bhuvaneswari M., Sivasankaran S., Ganga B., Hakeem A.K. Abdul, Impacts of chemical reaction on MHD double diffusive flow with suction/blowing and slip, Journal of Physics: Conference Series, 1139, 1, 2018. Crossref