In this article, motivated by more accurate simulation of electromagnetic blood flow in annular vessel geometries in intravascular thrombosis, a mathematical model is developed …
S Das, B Barman, RN Jana, OD Makinde - BioNanoScience, 2021 - Springer
In this paper, a theoretical study is conducted to examine the electromagnetic peristaltic pumping features of an electrically conducting non-Newtonian blood through an endoscope …
S Das, P Karmakar, A Ali - Waves in Random and Complex Media, 2023 - Taylor & Francis
In the current era, the electromagnetic pumping flow of hybrid nano-biofluid features in myriad magneto-biomedical engineering applications. In this scenario, the current …
M Ramamoorthy, L Pallavarapu - Multidiscipline Modeling in …, 2022 - emerald.com
Purpose The present work explores the influence of Hall and Ohmic heating effects on the convective peristaltic flow of a conducting Jeffrey nanofluid in an inclined porous asymmetric …
The impact of induced magnetic field and double-diffusive convection on the peristaltic pumping of six constant Jeffreys nanofluids in a tilted asymmetric channel are examined in …
S Das, TK Pal, RN Jana, B Giri - Microvascular Research, 2021 - Elsevier
This article aims to outline the characteristics of the blood flow conveying copper (Cu) and gold (Au) nanoparticles (NPs) through a non-uniform endoscopic annulus with wall slip …
A mathematical model is developed for 2-D laminar, incompressible, electrically conducting non-Newtonian (Power-law) fluid boundary layer flow along an exponentially stretching …
S Das, TK Pal, RN Jana - BioNanoScience, 2021 - Springer
This article refers to an investigation of peristaltic transport of hybrid nanoparticle suspended blood through an endoscopic annulus with elastic walls in the existence of blood clotting …
Biologically-inspired pumping systems are of great interest in modern engineering since they achieve enhanced efficiency and circumvent the need for moving parts and …