2020
DOI: 10.1007/978-981-15-4308-1_30
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Influence of Heat Generation/Absorption on 3D Magnetohydrodynamic Casson Fluid Flow Over a Porous Stretching Surface

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Cited by 6 publications
(4 citation statements)
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“…The converted Equations (19)(20)(21)(22)(23) and BCs (24) are solved using an efficient numerical approach called Runge-Kutta-Fehlberg (RKF) 45 method by setting the values of the variables as 𝑁 = 𝛾 1 = 𝛿 1 = 𝑅 0 = 𝐾 = 𝑁 * = 0.1, 𝑀 = 0.3, 𝐸 = 0.01, 𝐸𝑐 = 0.01, 𝑆𝑐 = 0.8, 𝑛 1 = 0.2 and followed by the step size 0.01 and error tolerance about 10 −6 . Table 1 illustrates that the recent results best match with the work of Khan et al [30] for some specific limiting conditions showing a solid agreement.…”
Section: Solution Methodologymentioning
confidence: 99%
See 1 more Smart Citation
“…The converted Equations (19)(20)(21)(22)(23) and BCs (24) are solved using an efficient numerical approach called Runge-Kutta-Fehlberg (RKF) 45 method by setting the values of the variables as 𝑁 = 𝛾 1 = 𝛿 1 = 𝑅 0 = 𝐾 = 𝑁 * = 0.1, 𝑀 = 0.3, 𝐸 = 0.01, 𝐸𝑐 = 0.01, 𝑆𝑐 = 0.8, 𝑛 1 = 0.2 and followed by the step size 0.01 and error tolerance about 10 −6 . Table 1 illustrates that the recent results best match with the work of Khan et al [30] for some specific limiting conditions showing a solid agreement.…”
Section: Solution Methodologymentioning
confidence: 99%
“…Shamshuddin et al [21] conducted an investigation on the movement of fluids caused by expanding sheet, taking into account the effects of HS/S and surface heat flux boundary circumstances. Tarakaramu and Satya Narayana [22] investigated the impact of heat generation/absorption on the flow of a 3D magnetohydrodynamic Casson liquid across a permeable stretchable surface.…”
Section: Introductionmentioning
confidence: 99%
“…The MHD stagnation point flow of Casson fluid towards a vertical exponentially stretching sheet with convective boundary condition is analyzed by Lund et al. 9 Tarakaramu and Narayana 10 examined the 3D magnetohydrodynamics flow of Casson fluid with heat generation/absorption across a porous stretching sheet.…”
Section: Introductionmentioning
confidence: 99%
“…It is a verifiable truth that the Casson fluid model is a decent contender to investigate their properties of non-Newtonian fluids, a large number of research papers are identified in literature survey, that corresponds with improving the thermal conductivity of the Casson fluid (Haldar et al [1], Sivaraj et al [2], Hamid et al [3], Gireesha et al [4], Satya Narayana et al [5], Eid and Mahny [6], Indumathi et al [7], Tarakaramu et al [8], Abdul Hakeem et al [9], and Eid and Mahny [10]). Many 26 researchers find variable thermal conductivity under different flow geometries.…”
Section: Introductionmentioning
confidence: 99%