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Impacts of Hall and Ion Slip on a Casson Nanofluid of a MHD with Radiation Absorption

  • A. Jancy Rani,
  • R. VijayaKumar

摘要

This study investigates the multifaceted impacts of Hall and ion slip effects on the flow and heat transfer characteristics of a Casson nanofluid subjected to Magnetohydrodynamics (MHD) and radiation absorption. The influence of electromagnetic forces through MHD, along with hall and ion slip effects, plays a vital role in shaping the flow of fluid and heat transfer within the system. The mathematical model governing the flow is built on the conservation equations of mass, momentum, energy, and species incorporating the Casson rheological model for non-Newtonian behavior. The findings from this research contribute valuable insights into the intricate interplay of Hall and ion slip effects on the blood flow and thermal characteristics of a Casson nanofluid under the influence of MHD and radiation absorption. Using the perturbation approach, the dimensionless governing equations have logical solutions. The significant results are displayed graphically.