
تعداد نشریات | 21 |
تعداد شمارهها | 610 |
تعداد مقالات | 9,027 |
تعداد مشاهده مقاله | 67,082,802 |
تعداد دریافت فایل اصل مقاله | 7,656,333 |
Influence of inclined magnetic field and heat transfer on peristaltic transfer Powell-Eyring fluid in asymmetric channel and porous medium | ||
International Journal of Nonlinear Analysis and Applications | ||
مقاله 56، دوره 13، شماره 2، مهر 2022، صفحه 631-642 اصل مقاله (592.15 K) | ||
نوع مقاله: Research Paper | ||
شناسه دیجیتال (DOI): 10.22075/ijnaa.2022.6469 | ||
نویسندگان | ||
Ali Khalefa Hage* ؛ Liqaa Zeki Hummady | ||
Department of Mathematic, University of Baghdad, Baghdad, Iraq | ||
تاریخ دریافت: 12 دی 1400، تاریخ بازنگری: 01 اسفند 1400، تاریخ پذیرش: 27 اسفند 1400 | ||
چکیده | ||
Peristaltic motion of a magnetohydrodynamic Powell-Eyring fluid in an asymmetric channel with porous walls. medium is investigated in the present study. The modeling of Mathematic is created in the presence of a stable inclined magnetic field and the angle with the vertical axis can be made, using constitutive equations following the Powell-Eyring fluid model. In flow analysis, assumptions such as long wave length approximation and low Reynolds number are utilized. Closed form formulas for the stream function and mechanical efficiency are created. On the channel walls, pressure rise per wave length has been calculated numerically. The effects of the Hartman number (Ha), Darcy number (Da), material fluid (A), inclination of magnetic field ($ \beta $), porous media parameter (w), amplitude ratio($ \emptyset $), pumpinh, The effects of the magnetic field's inclination on axial velocity and entrapment are investigated in detail and graphically shown. | ||
کلیدواژهها | ||
Inclined magnetic field؛ Powell-Eyring؛ peristaltic flow and heat transfer | ||
مراجع | ||
[1] M. Abbas and M. Bhatti, Simultaneous effect of slip and MHD on peristaltic blood flow of Jeffrey fluid model through a porous medium, Alexandria Engin. J. 55 (2016), 1017–1023. [2] F. Abbasi, T. Hayat and B. Ahmad, Hydromagnetic peristaltic transport of variable viscosity fluid with heat transfer and porous medium, Appl. Math. Inf. Sci. 10 (2016), 2173–2181. [3] H.A. Ali and A.M. Abdulhadi, The peristaltic transport of MHD Powell-Eyring fluid through porous medium in asymmetric channel with slip condition, Int. J. Sci. Res. 6 (2016), no. 12. [4] M. Devakar, K. Ramesh, S. Chouhan and A. Raje, Fully developed flow of non- Newtonian fluids in a straight uniform square duct through porous medium, J. Assoc. Arab Univ. Basic Appl. Sci. 23 (2017), 66–74. [5] T. Hayat, Q. Hussain and N. Ali, Influence of partial slip on the peristaltic flow in a porous medium, Physica A 387 (2008), 3399–3409. [6] T. Hayat, S. Shah, B. Ahmad, M. Mustafa, Effect of slip on peristaltic flow of Powell-Eyring fluid in a symmetric channel, Appl. Bionics Biomech. 11 (2014), 69–79. [7] S. Hina, MHD peristaltic transport of Eyring-Powell fluid with heat/mass transfer, wall properties and slip conditions, J. Magnetism Magnetic Materials 404 (2016), 148–158. [8] G. Ismail, F. Darwesh and N. Dabe, Peristaltic transport of a magneto non-Newtonian fluid through a porous medium in a horizontal finite channel, IOSR J. Math. 8 (2013), 32–39. [9] R.C. Kenneth and P. Shih, Magnetofluid dynamics for engineers and applied physicists, Scripta Publishing Company, 1973. [10] A. Khan, R. Ellahi and M. Usman, The effects of variable viscosity on the peristaltic flow of non-Newtonian fluid through a porous medium in an inclined channel with slip boundary conditions, J. Porous Media 16 (2013), no. 1. [11] T.W. Latham, Fluid motion in a peristaltic pump, M. S. Thesis, Massachusetts Institute of Technology, Cambridge, 1966. [12] F. Oyelami and M. Dada, Transient magnetohydrodynamic flow of Eyring-Powell fluid in a porous medium, Ife J. Sci. 18 (2016), no. 2. [13] A.H. Shapiro, M.Y. Jaffrin and S.L. Wienberg Peristaltic pumping with long wavelengths at low Reynolds number, J. Fluid Mech. 37 (1969), 799–825. [14] A. Tanveer, A. Alsaedi, M. Shafique, T. Hayat, ”Magnetohydrodynamic effects on peristaltic flow of hyperbolic tangent nanofluid with slip conditions and joule heating in an inclined channel, Int. J. Heat Mass Transfer 102 (2016), 54–63. [15] M. Veerakrishna and B. Swarnalathamma, Convective heat and mass transfer on MHD peristaltic flow of Williamson fluid with the effect of inclined magnetic field, Int. Conf. Condensed Matter Appl. Phys. 2015, 020461-1-020461-8. | ||
آمار تعداد مشاهده مقاله: 44,200 تعداد دریافت فایل اصل مقاله: 434 |