406
Views
48
CrossRef citations to date
0
Altmetric
Original Articles

A NEW SPECTRAL RELAXATION METHOD FOR SIMILARITY VARIABLE NONLINEAR BOUNDARY LAYER FLOW SYSTEMS

Pages 241-256 | Received 15 Aug 2012, Accepted 13 Jan 2013, Published online: 06 Nov 2013

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (5)

M. Venkata Subba Rao, Kotha Gangadhar & P. R. Sobhana Babu. (2022) Sutterby fluid flow past a stretching sheet embedded in a porous media with viscous dissipation. International Journal of Ambient Energy 43:1, pages 5247-5257.
Read now
K. Gangadhar, R. Edukondala Nayak & M. Venkata Subba Rao. (2022) Buoyancy effect on mixed convection boundary layer flow of Casson fluid over a non linear stretched sheet using the spectral relaxation method. International Journal of Ambient Energy 43:1, pages 1994-2002.
Read now
K. Gangadhar, D. Vijaya Kumar, M. Venkata Subba Rao, T. Kannan & G. Sakthivel. (2022) Effects of Newtonian heating on the boundary layer flow of non-Newtonian magnetohydrodynamic nanofluid over a stretched plate using spectral relaxation method. International Journal of Ambient Energy 43:1, pages 1248-1261.
Read now
K. Gangadhar, M. Venkata Subba Rao & P. R. Sobhana Babu. (2021) Numerical analysis for steady boundary layer flow of Maxwell fluid over a stretching surface embedded in a porous medium with viscous dissipation using the spectral relaxation method. International Journal of Ambient Energy 42:13, pages 1492-1498.
Read now
Santosh Chaudhary, Ajay Singh & KM Kanika. (2021) Mathematical analysis of MHD stagnation point flow of Cu-blood nanofluid past an exponential stretchable surface. International Journal for Computational Methods in Engineering Science and Mechanics 22:3, pages 170-180.
Read now

Articles from other publishers (43)

Adil Darvesh, Ali Akgül, Yasser Elmasry, Manuel Sánchez-Chero, Luis Jaime Collantes Santisteban, José Antonio Sánchez-Chero & Murad Khan Hassani. (2024) Thermal diffusivity of inclined magnetized Cross fluid with temperature dependent thermal conductivity: Spectral Relaxation scheme. Discover Applied Sciences 6:3.
Crossref
Ayele Tulu, Lemessa Asefa & Muhammad Sohail. (2024) Unsteady magnetohydrodynamic hybrid nanofluid flow over a rotating disk with viscous dissipation and Cattaneo–Christov heat flux model. International Journal of Thermofluids 21, pages 100586.
Crossref
Dayong Nie. (2023) Quasilinear Hyperbolic Systems Applied to Describe the Magnetohydrodynamic Nanofluid Flow. Advances in Mathematical Physics 2023, pages 1-10.
Crossref
Gilbert Makanda. (2022) Numerical Analysis of Fluid Flow Problems Using Spectral Relaxation Method (SRM). WSEAS TRANSACTIONS ON SYSTEMS 21, pages 199-214.
Crossref
M. Ferdows & J. C. Misra. (2022) Heat and Mass Transfer During MHD Flow of a Nanofluid Containing Gyrotactic Microorganisms on a Stretching/Shrinking Sheet. Multiscale Science and Engineering 4:1-2, pages 55-65.
Crossref
Shahina Akter, Mohammad Ferdows, Shamshuddin MD & Zailan Siri. (2022) Similarity solution for induced magnetic field boundary layer flow of metallic nanofluids via convectively inclined stationary/moving flat plate: Spectral relaxation computation. ZAMM - Journal of Applied Mathematics and Mechanics / Zeitschrift für Angewandte Mathematik und Mechanik 102:4.
Crossref
Nischay Rai & Sabyasachi Mondal. (2021) Spectral methods to solve nonlinear problems: A review. Partial Differential Equations in Applied Mathematics 4, pages 100043.
Crossref
A. Shahid, M. M. Bhatti, O. Anwar Bég, I. L. Animasaun & Khurram Javid. (2021) Spectral computation of reactive bi-directional hydromagnetic non-Newtonian convection flow from a stretching upper parabolic surface in non-Darcyporous medium. International Journal of Modern Physics B 35:29.
Crossref
Anwar Shahid, Mohamed S. Mohamed, Muhammad Mubashir Bhatti & Mohammad Hossein Doranehgard. (2021) Darcy–Brinkman–Forchheimer Model for Nano-Bioconvection Stratified MHD Flow through an Elastic Surface: A Successive Relaxation Approach. Mathematics 9:19, pages 2514.
Crossref
Gerald Tendayi Marewo. 2021. Recent Advances in Numerical Simulations. Recent Advances in Numerical Simulations.
Md. Rezwan Bin Mizan, Mohammad Ferdows, MD. Shamshuddin, O. Anwar Bég, Sulyman O. Salawu & Ali Kadir. (2021) Computation of ferromagnetic/nonmagnetic nanofluid flow over a stretching cylinder with induction and curvature effects. Heat Transfer 50:6, pages 5240-5266.
Crossref
J. K. Madhukesh, G. K. Ramesh, B. C. Prasannakumara, S. A. Shehzad & F. M. Abbasi. (2021) Bio-Marangoni convection flow of Casson nanoliquid through a porous medium in the presence of chemically reactive activation energy. Applied Mathematics and Mechanics 42:8, pages 1191-1204.
Crossref
Shahina Akter, M Ferdows, Tasveer A Bég, O Anwar Bég, A Kadir & Shuyu Sun. (2021) Spectral relaxation computation of electroconductive nanofluid convection flow from a moving surface with radiative flux and magnetic induction. Journal of Computational Design and Engineering 8:4, pages 1158-1171.
Crossref
Bidemi O. Falodun & Florence D. Ayegbusi. (2020) Soret–Dufour mechanism on an electrically conducting nanofluid flow past a semi‐infinite porous plate with buoyancy force and chemical reaction influence. Numerical Methods for Partial Differential Equations 37:2, pages 1419-1438.
Crossref
Ayele Tulu & Wubshet Ibrahim. (2020) Spectral relaxation method analysis of Casson nanofluid flow over stretching cylinder with variable thermal conductivity and Cattaneo–Christov heat flux model. Heat Transfer 49:6, pages 3433-3455.
Crossref
Gangadhar Kotha, Venkata Ramana Kolipaula, Munagala Venkata Subba Rao, Surekha Penki & Ali J. Chamkha. (2020) Internal heat generation on bioconvection of an MHD nanofluid flow due to gyrotactic microorganisms. The European Physical Journal Plus 135:7.
Crossref
Gangadhar Kotha, Venkata Subba Rao Munagala, Vijaya Kumar Damerla & Rama Subba Reddy Gorla. (2020) Newtonian heating effect on laminar flow of Casson fluids: Thermal analysis. Heat Transfer 49:4, pages 2390-2405.
Crossref
Mohammad Ferdows, Khairy Zaimi, Ahmed M. Rashad & Hossam A. Nabwey. (2020) MHD Bioconvection Flow and Heat Transfer of Nanofluid through an Exponentially Stretchable Sheet. Symmetry 12:5, pages 692.
Crossref
Ibukun S. Oyelakin, PC Lalramneihmawii, Sabyasachi Mondal, Samir K. Nandy & Precious Sibanda. (2020) Thermophysical analysis of three‐dimensional magnetohydrodynamic flow of a tangent hyperbolic nanofluid. Engineering Reports 2:4.
Crossref
Ayele Tulu & Wubshet Ibrahim. (2020) MHD Slip Flow of CNT-Ethylene Glycol Nanofluid due to a Stretchable Rotating Disk with Cattaneo–Christov Heat Flux Model. Mathematical Problems in Engineering 2020, pages 1-13.
Crossref
Olumuyiwa Otegbeye, Sicelo P. Goqo & Md Sharifuddin Ansari. Comparative study of some spectral based methods for solving boundary layer flow problems. Comparative study of some spectral based methods for solving boundary layer flow problems.
Ferdows, Reddy, Alzahrani & Sun. (2019) Heat and Mass Transfer in a Viscous Nanofluid Containing a Gyrotactic Micro-Organism Over a Stretching Cylinder. Symmetry 11:9, pages 1131.
Crossref
O. Otegbeye & S. S. Motsa. (2019) A paired spectral-finite difference approach for solving boundary layer flow problems. Afrika Matematika 30:3-4, pages 433-458.
Crossref
Wubshet Ibrahim & Ayele Tulu. (2019) Magnetohydrodynamic (MHD) Boundary Layer Flow Past a Wedge with Heat Transfer and Viscous Effects of Nanofluid Embedded in Porous Media. Mathematical Problems in Engineering 2019, pages 1-12.
Crossref
P.R. Sobhana Babu, M. Venkata Subba Rao & K. Gangadhar. (2019) Boundary layer flow of radioactive non-Newtonian nanofluid embedded in a porous medium over a stretched sheet using the spectral relaxation method. Materials Today: Proceedings 19, pages 2672-2680.
Crossref
K. Gangadhar, D. Vijaya Kumar, S. Mohammed Ibrahim & Oluwole Daniel Makinde. (2018) On Spectral Relaxation Approach to Radiating Powell-Eyring Fluid Flow over a Stretching Disk with Newtonian Heating. Defect and Diffusion Forum 387, pages 461-473.
Crossref
Sachin Shaw, Sandile S. Motsa & Precious Sibanda. (2018) Magnetic field and viscous dissipation effect on bioconvection in a permeable sphere embedded in a porous medium with a nanofluid containing gyrotactic micro‐organisms. Heat Transfer—Asian Research 47:5, pages 718-734.
Crossref
D. Srinivasacharya & K. Himabindu. (2018) Effect of Slip and Convective Boundary Conditions on Entropy Generation in a Porous Channel due to Micropolar Fluid Flow. International Journal of Nonlinear Sciences and Numerical Simulation 19:1, pages 11-24.
Crossref
M. A. Talha, M. Osman Gani & M. Ferdows. Numerical solutions for the effects of unsteadiness and power-law parameter on non-Newtonian magnetohydrodynamics of nanofluid past a stretching sheet with gyrotactic microorganisms. Numerical solutions for the effects of unsteadiness and power-law parameter on non-Newtonian magnetohydrodynamics of nanofluid past a stretching sheet with gyrotactic microorganisms.
O. Otegbeye & S. S. Motsa. A paired quasilinearization method for solving boundary layer flow problems. A paired quasilinearization method for solving boundary layer flow problems.
D Srinivasacharya & K Hima Bindu. (2017) Entropy generation of micropolar fluid flow in an inclined porous pipe with convective boundary conditions. Sādhanā 42:5, pages 729-740.
Crossref
Adeyemi Isaiah Fagbade & Adeola John Omowaye. (2016) Influence of thermal radiation on free convective heat and mass transfer past an isothermal vertical oscillating porous plate in the presence of chemical reaction and heat generation-absorption. Boundary Value Problems 2016:1.
Crossref
D. Srinivasacharya & K. Hima Bindu. (2016) Entropy generation in a porous annulus due to micropolar fluid flow with slip and convective boundary conditions. Energy 111, pages 165-177.
Crossref
Kolawole Sunday Adegbie & Adeyemi Isaiah Fagbade. (2016) Analysis of MHD Forced Convective Flow of Variable Fluid Properties over a Saturated Porous Medium with Thermal Radiation Effect. International Frontier Science Letters 9, pages 47-65.
Crossref
Ibukun Sarah Oyelakin, Sabyasachi Mondal & Precious Sibanda. (2016) Unsteady Casson nanofluid flow over a stretching sheet with thermal radiation, convective and slip boundary conditions. Alexandria Engineering Journal 55:2, pages 1025-1035.
Crossref
D. Srinivasacharya & K. Hima Bindu. (2016) Entropy generation in a micropolar fluid flow through an inclined channel. Alexandria Engineering Journal 55:2, pages 973-982.
Crossref
Nageeb AH Haroun, Precious Sibanda, Sabyasachi Mondal, Sandile S Motsa & Mohammad M Rashidi. (2015) Heat and mass transfer of nanofluid through an impulsively vertical stretching surface using the spectral relaxation method. Boundary Value Problems 2015:1.
Crossref
Nageeb A Haroun, Precious Sibanda, Sabyasachi Mondal & Sandile S Motsa. (2015) On unsteady MHD mixed convection in a nanofluid due to a stretching/shrinking surface with suction/injection using the spectral relaxation method. Boundary Value Problems 2015:1.
Crossref
Ch. RamReddy, P.A. Lakshmi Narayana & S.S. Motsa. (2015) A spectral relaxation method for linear and non-linear stratification effects on mixed convection in a porous medium. Applied Mathematics and Computation 268, pages 991-1000.
Crossref
Waqar A. Khan, Richard Culham & Oluwole D. Makinde. (2015) Hydromagnetic blasius flow of power‐law nanofluids over a convectively heated vertical plate. The Canadian Journal of Chemical Engineering 93:10, pages 1830-1837.
Crossref
Faiz G. Awad, Sami M. S. Ahamed, Precious Sibanda & Melusi Khumalo. (2015) The Effect of Thermophoresis on Unsteady Oldroyd-B Nanofluid Flow over Stretching Surface. PLOS ONE 10:8, pages e0135914.
Crossref
Nageeb A.H. Haroun, Sabyasachi Mondal & Precious Sibanda. (2015) Unsteady Natural Convective Boundary-layer Flow of MHD Nanofluid over a Stretching Surfaces with Chemical Reaction Using the Spectral Relaxation Method: A Revised Model. Procedia Engineering 127, pages 18-24.
Crossref
S. S. Motsa, P. Sibanda, J. M. Ngnotchouye & G. T. Marewo. (2014) A Spectral Relaxation Approach for Unsteady Boundary-Layer Flow and Heat Transfer of a Nanofluid over a Permeable Stretching/Shrinking Sheet. Advances in Mathematical Physics 2014, pages 1-10.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.