M
Marin Marin
Researcher at Transilvania University of Brașov
Publications - 236
Citations - 5066
Marin Marin is an academic researcher from Transilvania University of Brașov. The author has contributed to research in topics: Thermoelastic damping & Boundary value problem. The author has an hindex of 41, co-authored 193 publications receiving 3419 citations. Previous affiliations of Marin Marin include Maharishi Markandeshwar University, Mullana & Transylvania University.
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Convective heat transfer flow of nanofluid in a porous medium over wavy surface
TL;DR: In this paper, water base nanofluid flow over a wavy surface in a porous medium of spherical packing beds is investigated, and the results illustrate that convection heat transfer is improved by nanoparticles concentration but reduces when fluid attract to porous walls.
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EXPLORATION OF CONVECTIVE HEAT TRANSFER AND FLOW CHARACTERISTICS SYNTHESIS BY Cu–Ag/WATER HYBRID-NANOFLUIDS
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Numerical study of heat transfer and Hall current impact on peristaltic propulsion of particle-fluid suspension with compliant wall properties
Muhammad Mubashir Bhatti,Muhammad Mubashir Bhatti,Rahmat Ellahi,Rahmat Ellahi,Ahmed Zeeshan,Marin Marin,N. Ijaz +6 more
TL;DR: In this article, the effects of heat transfer and Hall current on the sinusoidal motion of solid particles through a planar channel has been discussed and the walls of the channel are considered as compressive barriers.
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Swimming of Motile Gyrotactic Microorganisms and Nanoparticles in Blood Flow Through Anisotropically Tapered Arteries
Muhammad Mubashir Bhatti,Muhammad Mubashir Bhatti,Marin Marin,Ahmed Zeeshan,Rahmat Ellahi,Rahmat Ellahi,Rahmat Ellahi,Sara I. Abdelsalam +7 more
TL;DR: In this paper, the authors presented a theoretical study on the swimming of migratory gyrotactic microorganisms in a non-Newtonian blood-based nanofluid via an anisotropic narrowing artery.
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Effect of thermal loading due to laser pulse on thermoelastic porous medium under G-N theory
TL;DR: In this article, the wave propagation of generalized thermoelastic medium with voids under the effect of thermal loading due to laser pulse with energy dissipation was studied and a normal mode method was proposed to analyze the problem and obtain numerical solutions for the displacement components, stresses, temperature distribution and the change in the volume fraction field.