Analysis of unsteady non-Newtonian Jeffrey blood flow and transport of magnetic nanoparticles through an inclined porous artery with stenosis using the time fractional derivative

被引:12
|
作者
Yadeta, Habtamu Bayissa [1 ]
Shaw, Sachin [1 ]
机构
[1] Botswana Int Univ Sci & Technol, Dept Math & Stat Sci, Private Bag 16, Palapye, Botswana
关键词
FLUID-FLOW; THERMAL-RADIATION; PULSATILE FLOW; HEAT-TRANSFER; FIELD; PARTICLES; VELOCITY; MODEL; SLIP;
D O I
10.1063/5.0165216
中图分类号
O59 [应用物理学];
学科分类号
摘要
In the present study, a Caputo-Fabrizio (C-F) time-fractional derivative is introduced to the governing equations to present the flow of blood and the transport of magnetic nanoparticles (MNPs) through an inclined porous artery with mild stenosis. The rheology of blood is defined by the non-Newtonian visco-elastic Jeffrey fluid. The transport of MNPs is used as a drug delivery application for cardiovascular disorder therapy. The momentum and transport equations are solved analytically by using the Laplace transform and the finite Hankel transform along with their inverses, and the solutions are presented in the form of Laplace convolutions. To display the solutions graphically, the Laplace convolutions are solved using the numerical integration technique. The study presents the impacts of different governing parameters on blood and MNP velocities, volumetric flow rate, flow resistance, and skin friction. The study demonstrates that blood and MNP velocities boost with an increase in the fractional order parameter, Darcy number, and Jeffrey fluid parameter. The volumetric flow rate decreases and flow resistance increases with enhancement in stenosis height. The non-symmetric shape of stenosis and the rheology of blood decrease skin friction, whereas enhancement in MNP concentration increases skin friction. A comparison of the present result with the previous work shows excellent agreement. The present study will be beneficial for the field of medical science to further study atherosclerosis therapy and other similar disorders.
引用
收藏
页数:19
相关论文
共 20 条
  • [1] Analysis of non-Newtonian magnetic Casson blood flow in an inclined stenosed artery using Caputo-Fabrizio fractional derivatives
    Jamil, Dzuliana Fatin
    Saleem, S.
    Roslan, Rozaini
    Al-Mubaddel, Fahad S.
    Rahimi-Gorji, Mohammad
    Issakhov, Alibek
    Din, Salah Ud
    COMPUTER METHODS AND PROGRAMS IN BIOMEDICINE, 2021, 203
  • [2] Radiative flow of non Newtonian nanofluids within inclined porous enclosures with time fractional derivative
    Arafa, Anas A. M.
    Rashed, Z. Z.
    Ahmed, Sameh E.
    SCIENTIFIC REPORTS, 2021, 11 (01)
  • [3] Unsteady response of non-Newtonian blood flow through a stenosed artery in magnetic field
    Ikbal, Md. A.
    Chakravarty, S.
    Wong, Kelvin K. L.
    Mazumdar, J.
    Mandal, P. K.
    JOURNAL OF COMPUTATIONAL AND APPLIED MATHEMATICS, 2009, 230 (01) : 243 - 259
  • [4] Pulsatile pressure-driven non-Newtonian blood flow through a porous stenotic artery: A computational analysis
    Fahim, Muhammad
    Sajid, Muhammad
    Ali, Nasir
    NUMERICAL HEAT TRANSFER PART A-APPLICATIONS, 2024,
  • [5] Unsteady blood flow of non-Newtonian fluid through a rigid artery in the presence of multi-irregular stenoses
    Shabbir, M. S.
    Ali, N.
    Abbas, Z.
    JOURNAL OF THE BRAZILIAN SOCIETY OF MECHANICAL SCIENCES AND ENGINEERING, 2018, 40 (09)
  • [6] Hydrothermal analysis on non-Newtonian nanofluid flow of blood through porous vessels
    Hosseinzadeh, S.
    Hosseinzadeh, Kh
    Hasibi, A.
    Ganji, D. D.
    PROCEEDINGS OF THE INSTITUTION OF MECHANICAL ENGINEERS PART E-JOURNAL OF PROCESS MECHANICAL ENGINEERING, 2022, 236 (04) : 1604 - 1615
  • [7] Magnetic Nanoparticles for Drug Delivery through Tapered Stenosed Artery with Blood Based Non-Newtonian Fluid
    Bhatti, Muhammad Mubashir
    Sait, Sadiq M.
    Ellahi, Rahmat
    PHARMACEUTICALS, 2022, 15 (11)
  • [8] Pulsatile flow of EMHD non-Newtonian nano-blood through an inclined tapered porous artery with combination of stenosis and aneurysm under body acceleration and slip effects
    El Glili, I.
    Driouich, M.
    NUMERICAL HEAT TRANSFER PART A-APPLICATIONS, 2024,
  • [9] Biomedical study of effects nanoparticles on unsteady blood (non-Newtonian) flow through a catheterized stenotic vessel
    Zaman, Akbar
    Sajid, M.
    Kousar, Nabeela
    CANADIAN JOURNAL OF PHYSICS, 2019, 97 (05) : 487 - 497
  • [10] Exact Solution of Non-Newtonian Blood Flow with Nanoparticles through Porous Arteries: A Comparative Study
    Alharbi, Wafaa
    Aljohani, Abdulrahman
    El-Zahar, Essam
    Ebaid, Abdelhalim
    CMC-COMPUTERS MATERIALS & CONTINUA, 2020, 63 (03): : 1143 - 1157