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Numerical solution through mathematical modelling of unsteady MHD flow past a semi-infinite vertical moving plate with chemical reaction and radiation

Open Access
|Dec 2018

Figures & Tables

Figure 1

Sketch of the flow geometry.
Sketch of the flow geometry.

Figure 2

Velocity profiles for different times at M = 2, K = 2, Gr = 2, Gm = 2, Pr = 0.72,ϕ = 2, Q1 = 2, Sc = 0.2,γ = 0.2,ϕ 1 = 0.2, m = 0.5 .
Velocity profiles for different times at M = 2, K = 2, Gr = 2, Gm = 2, Pr = 0.72,ϕ = 2, Q1 = 2, Sc = 0.2,γ = 0.2,ϕ 1 = 0.2, m = 0.5 .

Figure 3

Temperature profiles for different times at M = 2, K = 2, Gr = 2, Gm = 2, Pr = 0.72,ϕ = 2, Q1 = 2, Sc = 0.2,γ = 0.2,ϕ 1 = 0.2, m = 0.5 .
Temperature profiles for different times at M = 2, K = 2, Gr = 2, Gm = 2, Pr = 0.72,ϕ = 2, Q1 = 2, Sc = 0.2,γ = 0.2,ϕ 1 = 0.2, m = 0.5 .

Figure 4

Concentration profiles for different times at M = 2, K = 2, Gr = 2, Gm = 2, Pr = 0.72,ϕ = 2, Q1 = 2, Sc = 0.2,γ = 0.2,ϕ 1 = 0.2, m = 0.5 .
Concentration profiles for different times at M = 2, K = 2, Gr = 2, Gm = 2, Pr = 0.72,ϕ = 2, Q1 = 2, Sc = 0.2,γ = 0.2,ϕ 1 = 0.2, m = 0.5 .

Figure 5

Steady state velocity profiles for different values of M at K = 2, Gr = 2, Gm = 2, Pr = 0.72,ϕ = 2, Q1 = 2, Sc = 0.2,γ = 0.2,ϕ 1 = 0.2, m = 0.5 .
Steady state velocity profiles for different values of M at K = 2, Gr = 2, Gm = 2, Pr = 0.72,ϕ = 2, Q1 = 2, Sc = 0.2,γ = 0.2,ϕ 1 = 0.2, m = 0.5 .

Figure 6

Steady state temperature profiles for different values of M at K = 2, Gr = 2, Gm = 2, Pr = 0.72,ϕ = 2, Q1 = 2, Sc = 0.2,γ = 0.2,ϕ 1 = 0.2, m = 0.5 .
Steady state temperature profiles for different values of M at K = 2, Gr = 2, Gm = 2, Pr = 0.72,ϕ = 2, Q1 = 2, Sc = 0.2,γ = 0.2,ϕ 1 = 0.2, m = 0.5 .

Figure 7

Steady state concentration profiles for different values of M at K = 2, Gr = 2, Gm = 2, Pr = 0.72,ϕ = 2, Q1 = 2, Sc = 0.2,γ = 0.2,ϕ 1 = 0.2, m = 0.5 .
Steady state concentration profiles for different values of M at K = 2, Gr = 2, Gm = 2, Pr = 0.72,ϕ = 2, Q1 = 2, Sc = 0.2,γ = 0.2,ϕ 1 = 0.2, m = 0.5 .

Figure 8

Steady state velocity profiles for different values of Sc at M = 2, K = 2, Gr = 2, Gm = 2, Pr = 0.72,ϕ = 2, Q1 = 2, γ = 0.2,ϕ 1 = 0.2, m = 0.5 .
Steady state velocity profiles for different values of Sc at M = 2, K = 2, Gr = 2, Gm = 2, Pr = 0.72,ϕ = 2, Q1 = 2, γ = 0.2,ϕ 1 = 0.2, m = 0.5 .

Figure 9

Steady state temperature profiles for different values of Sc at M = 2, K = 2, Gr = 2, Gm = 2, Pr = 0.72,ϕ = 2, Q1 = 2, γ = 0.2,ϕ 1 = 0.2, m = 0.5 .
Steady state temperature profiles for different values of Sc at M = 2, K = 2, Gr = 2, Gm = 2, Pr = 0.72,ϕ = 2, Q1 = 2, γ = 0.2,ϕ 1 = 0.2, m = 0.5 .

Figure 10

Steady state concentration profiles for different values of Sc at M = 2, K = 2, Gr = 2, Gm = 2, Pr = 0.72,ϕ = 2, Q1 = 2, γ = 0.2,ϕ 1 = 0.2, m = 0.5 .
Steady state concentration profiles for different values of Sc at M = 2, K = 2, Gr = 2, Gm = 2, Pr = 0.72,ϕ = 2, Q1 = 2, γ = 0.2,ϕ 1 = 0.2, m = 0.5 .

Figure 11

Steady state concentration profiles for different values of γ at M = 2, K = 2, Gr = 2, Gm = 2, Pr = 0.72,ϕ = 2, Q1 = 2, Sc = 0.2,ϕ 1 = 0.2, m = 0.5 .
Steady state concentration profiles for different values of γ at M = 2, K = 2, Gr = 2, Gm = 2, Pr = 0.72,ϕ = 2, Q1 = 2, Sc = 0.2,ϕ 1 = 0.2, m = 0.5 .

Figure 12

Steady state temperature profiles for different values of ϕ at M = 2, K = 2, Gr = 2, Gm = 2, Pr = 0.72,γ = 0.2, Q1 = 2, Sc = 0.2,ϕ 1 = 0.2, m = 0.5 .
Steady state temperature profiles for different values of ϕ at M = 2, K = 2, Gr = 2, Gm = 2, Pr = 0.72,γ = 0.2, Q1 = 2, Sc = 0.2,ϕ 1 = 0.2, m = 0.5 .

Figure 13

Steady state concentration profiles for different values of ϕ at M = 2, K = 2, Gr = 2, Gm = 2, Pr = 0.72,γ = 0.2, Q1 = 2, Sc = 0.2,ϕ 1 = 0.2, m = 0.5 .
Steady state concentration profiles for different values of ϕ at M = 2, K = 2, Gr = 2, Gm = 2, Pr = 0.72,γ = 0.2, Q1 = 2, Sc = 0.2,ϕ 1 = 0.2, m = 0.5 .
DOI: https://doi.org/10.2478/sgem-2018-0041 | Journal eISSN: 2083-831X | Journal ISSN: 0137-6365
Language: English
Page range: 270 - 281
Submitted on: Aug 27, 2018
Accepted on: Nov 15, 2018
Published on: Dec 31, 2018
Published by: Wroclaw University of Science and Technology
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2018 Anupam Bhandari, published by Wroclaw University of Science and Technology
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.