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   investigation of temperature jump and slip effects on nanofluid treatment inside a vertical annulus via modified buongiorno’s model  
   
نویسنده ghaffarianjam hamidreza ,moshizi sajad a. ,zamani mahdi ,amiri daluee mahdi
منبع journal of computational and applied research in mechanical engineering - 2021 - دوره : 10 - شماره : 2 - صفحه:511 -524
چکیده    In the present work, the study of alumina-water nanofluid heat transfer between two concentric vertical cylinders has been done by modified buongiorno’s model (bm) to examine the impacts of temperature jump and slip velocity boundary conditions for a wide range of knudsen number. runge-kutta-fehlberg method, as a standard integration scheme along with a shooting method, has been chosen for solving nonlinear ordinary differential equations (odes) along with boundary conditions. the main concentration of this paper is on the temperature jump since the slip velocity has been extensively examined in many studies. the presence of temperature jump boundary condition by varying knudsen number was considered to investigate the effects of the bulk mean nanoparticle volume fraction ϕb, mixed convection parameter nr, buoyancy parameter ng, and heat flux ratio ε on the total dimensionless heat transfer coefficient htc and the dimensionless pressure gradient ndp. the obtained results indicate that temperature jump boundary condition plays a pivotal role in temperature profile, heat transfer coefficient and pressure drop; for instance, the negligence of temperature jump near walls causes to undervalue heat transfer coefficient in continuum flow regime and overestimate it in slip flow regime
کلیدواژه nanofluid ,modified buongiorno’s model ,temperature jump ,slip velocity ,mixed convection
آدرس islamic azad university, gonabad branch, department of mechanical engineering, iran, islamic azad university, neyshabur branch, young researchers and elite club, iran, ferdowsi university of mashhad, cdepartment of mechanical engineering, iran, khavaran institute of higher education, faculty of civil engineering and environment, iran
 
     
   
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