Casson rheological flow model in an inclined stenosed artery with non-Darcian porous medium and quadratic thermal convection
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Abubakar, J.U., Gbedeyan, J.A., Ojo, J.B.: Steady blood flow through vascular stenosis under the influence of magnetic field. Centrepoint J. (Sci. Ed.) 25(1), 61–82 (2019)
Abubakar, J.U., Adeoye, A.D.: Effects of radiative heat and magnetic field on blood flow in an inclined tapered stenosed porous artery. J. Taibah Univ. Sci. 14(1), 77–86 (2020). https://doi.org/10.1080/16583655.2019.1701397
Akbarzedeh, P.: Pulsatile Magneto-hydrodynamic blood flows through porous blood vessels using a third grade non-newtonian fluids model. Comput. Methods Progr. Biomed. 126(3–19), 2016 (2016)
Beckermann, C., Viskanta, R., Ramadhyani, S.: A numerical study of non-Darcian natural convection in a vertical enclosure filled with a porous medium. Numer. Heat Transf. 10, 557–570 (1986)
Bhargava, R., Anwar, O., Rawat, S., Beg, T.A., Triphati, D.: Finite element study of transient pulsatile magneto-hemodynamic non-Newtonian flow and drug diffusion in a porous medium channel. J. Mech. Med. Biol. 12(14), 1250081 (2012)
Bhatti, M.M., Abdelsalam, S.I.: Bio-inspired peristaltic propulsion of hybrid nanofluid flow with Tantalum (Ta) and Gold (Au) nanoparticles under magnetic effects. Waves Random Complex Med. (2021). https://doi.org/10.1080/17455030.2021.1998728
Chaturani, P., Samy, R.P.: Pulsative flow of Casson’s fluid through stenosed arteries with applications to blood flow. Biorhelogy 23(5), 499–511 (1986)
Elnaqeeb, T., Sheh, N.A., Mekheimer, K.S.: Hemodynamics characteristics of gold nanoparticle blood flow through a tapered stenosed vessel with variable nanofluid viscosity. BioNanoScience 9(2), 245–255 (2019)
Guner, A., Yalcinbas, S.: Legendre collocation method for solving nonlinear differential equations. Math. Comput. Appl. 18(3), 521–530 (2013)
Hayat, T., Haider, F., Muhammad, T., Alsaedi, A.: Darcy–Forchheimer flow with Cattaneo–Christov homogeneous-heterogeneous. PLoS ONE 12(2017), 1–18 (2017)
Ikbar, M.A., Chakravarty, S., Kelvin, K.L., Wong, M.J., Mandal, P.K.: Unsteady response of non-newtonian blood flow through a stenosed artery in magnetic field. J. Comput. Appl. Math. 230(1), 243–259 (2009)
Krishna, M.M.: Effect of heat and mass flux conditions on Magnetohydrodynamics flow of Casson fluid over a curved stretching surface (2019). https://doi.org/10.4028/www.scientific.net/DDF.392.29
Krishna, M.M.: Numerical investigation on magnetohydrodynamics flow of Casson fluid over a deformable porous layer with slip conditions. Indian J. Phys. (2019). https://doi.org/10.1007/s12648-019-01668-4
Mallawi, F., Alzaidy, J.F., Hafez, R.M.: Application of a Legendre collocation method to the space-time variable fractional-order advection-dispersion equation. J. Taibah Univ. Sci. 13, 2019 (2018)
Mandal, P.K., Chakravarthy, S., Mandal, A., Amin, N.: Effect of the body acceleration on unsteady pulsatile flow of non-Newtonian fluid through a stenosed artery. Appl. Math. Comput. 189, 766–779 (2007)
Mustafa, T.: Eyring-Powell fluid flow through a circular pipe and heat transfer: full solutions. Int. J. Numer. Meth. Heat Fluid Flow 30(11), 4765–4774 (2020). https://doi.org/10.1108/hff-12-2019-0925
Poonam, Sharma, B.K., Kumawat, C., Vafai, K.: Computational biomedical simulations of hybrid nanoparticles (blood-mediated) transport in a stenosed and aneurysmal curved artery with heat and mass transfer: hematocrit dependent viscosity approach. Chem. Phys. Lett. 800, 139666 (2022)
Sharma, B.K., Rishu Gandhi, M.M.: Bhatti, Entropy analysis of thermally radiating MHD slip flow of hybrid nanoparticles (Au–Al2O3/Blood) through a tapered multi-stenosed artery. Chem. Phys. Lett. 790, 139348 (2022). https://doi.org/10.1016/j.cplett.2022.139348
Tripathi, B., Kumar, B.S.: MHD blood flow and heat transfer through an inclined porous stenosed artery with variable viscosity. J. Taibah Univ. Sci. 14(1), 77–86 (2019). https://doi.org/10.1080/16583655.2019.1701397