Recent Developments of Nanofluids / / edited by Rahmat Ellahi |
Pubbl/distr/stampa | Basel : , : MDPI - Multidisciplinary Digital Publishing Institute, , 2018 |
Descrizione fisica | 1 online resource (158 pages) : illustrations |
Disciplina | 621.4 |
Soggetto topico | Heat exchangers |
Formato | Materiale a stampa ![]() |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Record Nr. | UNINA-9910674045403321 |
Basel : , : MDPI - Multidisciplinary Digital Publishing Institute, , 2018 | ||
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Lo trovi qui: Univ. Federico II | ||
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Recent Developments of Nanofluids / / edited by Rahmat Ellahi |
Pubbl/distr/stampa | Basel : , : MDPI, , 2018 |
Descrizione fisica | 1 online resource (vii, 158 pages) : illustrations |
Disciplina | 620.106 |
Soggetto topico | Microfluidics |
ISBN | 3-03842-834-5 |
Formato | Materiale a stampa ![]() |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Nota di contenuto | About the Special Issue Editor. v. Preface to "Recent Developments of Nanofluids" vii. Tasawar Hayat, Tehseen Abbas, Muhammad Ayub, Taseer Muhammad and Ahmed Alsaedi On Squeezed Flow of Jeffrey Nanofluid between Two Parallel Disks doi:10.3390/app6110346. 1. Waris Khan, Taza Gul, Muhammad Idrees, Saeed Islam, Ilyas Khan and L.C.C. Dennis Thin Film Williamson Nanofluid Flow with Varying Viscosity and Thermal Conductivity on a Time-Dependent Stretching Sheet doi:10.3390/app6110334. 16. Sajid Hussain, Asim Aziz, Taha Aziz and Chaudry Masood KhaliqueSlip Flow and Heat Transfer of Nanofluids over a Porous Plate Embedded in a Porous Medium with Temperature Dependent Viscosity and Thermal Conductivity doi:10.3390/app6120376. 38. Constantin Fetecau, Dumitru Vieru and Waqas Ali Azhar Natural Convection Flow of Fractional Nanofluids Over an Isothermal Vertical Plate with Thermal Radiation doi:10.3390/app7030247. 55. Noor Saeed Khan, Taza Gul, Saeed Islam, Ilyas Khan, Aisha M. Alqahtani and Ali Saleh Alshomrani Magnetohydrodynamic Nanoliquid Thin Film Sprayed on a Stretching Cylinder with Heat Transfer doi:10.3390/app7030271. 68. Liaqat Ali, Saeed Islam, Taza Gul, Ilyas Khan, L. C. C. Dennis, Waris Khan and Aurangzeb Khan The Brownian and Thermophoretic Analysis of the Non-Newtonian Williamson Fluid Flow of Thin Film in a Porous Space over an Unstable Stretching Surface doi:10.3390/app7040404. 93. Ningbo Zhao and Zhiming Li Viscosity Prediction of Different Ethylene Glycol/Water Based Nanofluids Using a RBF Neural Network doi:10.3390/app7040409. 114. Saman Rashidi, Javad Aolfazli Esfahani and Rahmat Ellahi Convective Heat Transfer and Particle Motion in an Obstructed Duct with Two Side by Side Obstacles by Means of DPM Model doi:10.3390/app7040431. 130. Rahmat Ellahi Special Issue on Recent Developments of Nanofluids doi:10.3390/app8020192. 144. |
Record Nr. | UNINA-9910765711803321 |
Basel : , : MDPI, , 2018 | ||
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Lo trovi qui: Univ. Federico II | ||
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Recent Trends in Coatings and Thin Film–Modeling and Application |
Autore | Ellahi Rahmat |
Pubbl/distr/stampa | Basel, Switzerland, : MDPI - Multidisciplinary Digital Publishing Institute, 2021 |
Descrizione fisica | 1 electronic resource (508 p.) |
Soggetto topico | Technology: general issues |
Soggetto non controllato |
Synovial fluid
coating shear-thinning and -thickening models mass transport asymmetric channel analytical solution thin film spin coating rotating disk nanoparticles Newtonian fluids coatings curved stretched surface nanoliquid nonlinear thermal radiation entropy generation Reiner-Phillipoff fluid time-dependent thermal radiation homotopy analysis method (HAM) thin film of micropolar fluid porous medium thermophoresis skin friction Nusselt number and Sherwood number variable thickness of the liquid film HAM optical fiber coating double-layer coating viscoelastic PTT fluid analytic and numerical simulations thin film casson nanofluid SWCNTs and MWCNTs stretching cylinder MHD unsteady flow and heat transfer nanofluid Blasius–Rayleigh–Stokes variable dual solutions numerical solution correlation expressions Casson fluid condensation film heat generation/consumption thin liquid film flow carbon nanotubes Cattaneo-Christov heat flux variable heat source/sink heated bi-phase flow couple stress fluid lubrication effects slippery walls magnetohydrodynamics Darcy-Forchheimer nanofluid nonlinear extending disc variable thin layer HAM and numerical method peristaltic flow an endoscope variable viscosity Adomian solutions different wave forms pseudo-similarity variable micropolar nanofluid darcy forchheimer model MHD flow triple solution stability analysis APCM Caputo derivative unsteady flow shrinking surface Williamson model peristaltic pumping convective boundary conditions analytic solutions second order slip double stratification Cattaneo–Christov heat flux variable thermal conductivity Williamson nanofluid velocity second slip wave forms exact solutions magnetic field heat and mass transfer Hall current homogeneous–heterogeneous reactions viscoelastic fluids heterogeneous–homogeneous reactions mixed convective flow binary chemical reaction arrhenius activation energy gas-liquid coatings bubbles two-fluid model phase distribution HPM double diffusion curved channel compliant walls analytical solutions third grade fluid model hybrid nanofluid induced magnetic field mixed convection heat generation peristalsis cilia beating Non-Newtonian Bejan number Jeffrey fluid model eccentric annuli droplet impact modelling impedance analysis rain erosion ultrasound measurements viscoelastic modelling wind turbine blades computational modelling rain erosion testing viscoelastic characterization development and characterization of coatings applications of thin films nanostructured materials surfaces and interfaces applications of multiphase fluids mathematical modeling on biological applications electronics magnetics and magneto-optics |
Formato | Materiale a stampa ![]() |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Record Nr. | UNINA-9910557561203321 |
Ellahi Rahmat
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Basel, Switzerland, : MDPI - Multidisciplinary Digital Publishing Institute, 2021 | ||
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Lo trovi qui: Univ. Federico II | ||
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