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Combined effects of chemical reaction and variable thermal conductivity on MHD peristaltic flow of Phan-Thien-Tanner liquid through inclined channel

Hanumesh VaidyaDepartment of Mathematics, Vijayanagara Sri Krishnadevaraya University, Ballari, Karnataka, IndiaK. V. PrasadDepartment of Mathematics, Vijayanagara Sri Krishnadevaraya University, Ballari, Karnataka, IndiaM. Ijaz KhanDepartment of Mathematics and Statistics, Riphah International University, Islamabad, PakistanFateh Mebarek‐OudinaDepartment of Physics, Faculty of Sciences, University of 20 Août 1955-Skikda, Road El-Hadaeik, B.P. 26, Skikda 21000, AlgeriaIskander TliliPhysics Department, College of Science, Majmaah University, Al-Zulfi, Al-Majmaah, Saudi ArabiaC. RajashekharDepartment of Mathematics, Manipal Institute of Technology Bengaluru, Manipal Academy of Higher Education, Manipal, IndiaShivaleelaDepartment of Mathematics, Vijayanagara Sri Krishnadevaraya University, Ballari, Karnataka, IndiaSamia ElattarDepartment of Industrial & Systems Engineering, College of Engineering, Princess Nourah bint Abdulrahman University, P.O.Box 84428, Riyadh 11671, Saudi ArabiaMuhammad Imran KhanDepartment of Mathematics and Statistics, Riphah International University, Islamabad, PakistanSami G. Al‐GhamdiDivision of Sustainable Development, College of Science & Engineering, Hamad Bin Khalifa University, Qatar Foundation, Doha, Qatar
2022en
ABI

Аннотация

The paper investigates the blood flow analysis through a non-uniform inclined channel by treating blood as a non-Newtonian Phan-Thien-Tanner (PTT) liquid. The impact of the chemical reaction and convective boundary conditions are studied in the current formulation. The interaction referring to such constraints report supporting behavior to simulates the particles motion in surgical systems. The fluid movement is regulated through complictatd systems for which solution is enables via perturbation procedure. The influences of diverse emerging parameters over several physiological quantities are scrutinized explicitly. It is also detected that geometric parameters like amplitudes, non-uniform parameters, and inclination angles play a vital role in operating liquid transport phenomena. The obtained results reveal that controlling of velocity due to magnetic constants is observed while thermal determination of particles showing an enhancing trend. Hence magnetic field is used in blood flow analysis such as a catheter, drug delivery, etc. The objective of applicable pertialtic model provdes assistant in hemodialysis.

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