article · Journal of Nanofluids
Blood plays a fundamental role in transporting oxygen and nutrients to all cells of the body of the living organism by moving it through the blood vessels that consist of veins, arteries, and capillaries by the heart. Blood is used to deliver medicine to treat certain diseases like cancer using contemporary techniques called thermal nanotechnology. The main objective of this study aims to examine the impacts of heat generation/absorption, and heat radiation MHD the peristaltic movement of a Jeffrey fluid (a blood model) in the existence of gold nanoparticles (Au) through an asymmetric channel in a porous media. By using the approximation of long waves and ignoring The Reynolds number for magnetic, the flow process is controlled by a system of partial differential equations was changed into a new ordinary differential equation system which were then solved analytically by the differential operator’s method. With MATHEMATICA 10 software, a graphical analysis was carried out to show the behaviors of the main distributions under investigation under the influence of every physical parameter that the study produced, along with an explanation of the underlying principles, physical meanings, and potential medical applications. According to some study findings, the delivery of the medication and the treatment of incurable diseases when thermal radiation and heat generation/absorption were present, greatly aided by the favorable impacts of the Darcy number and magnetic field on the distribution of axial velocity as well as by raising the volume fraction of gold nanoparticles and the temperature.
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DOI: 10.1166/jon.2024.2211
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