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Content Provider | Springer Nature Link |
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Author | Chakraborty, Tanmoy Das, Kalidas Kundu, Prabir Kumar |
Copyright Year | 2017 |
Abstract | The heat absorber uses in solar power plants have generally low energy adaptation owing to large emissive losses at high temperature. Recently, nanofluid based solar energy absorber have acknowledged immense scientific curiosity to competent share and store the thermal energy. Here we examine theoretically the natural convective flow of an Ag nanoparticle based nanofluid flow along an inclined flat sheet embedded in a Darcy-Forchheimer permeable medium coexistence of solar radiation. By use of similarity transformations, the fundamental partial differential system and boundary conditions are tackled numerically using Runge-Kutta Gill based shooting procedure. The impacts of governing parameters upon the flow, temperature, Nusselt number and skin friction coefficient are represented tabular as well as in graphical form. |
Starting Page | 2443 |
Ending Page | 2449 |
Page Count | 7 |
File Format | |
ISSN | 1738494X |
Journal | Journal of Mechanical Science and Technology |
Volume Number | 31 |
Issue Number | 5 |
e-ISSN | 19763824 |
Language | English |
Publisher | Korean Society of Mechanical Engineers |
Publisher Date | 2017-05-20 |
Publisher Place | Seoul |
Access Restriction | One Nation One Subscription (ONOS) |
Subject Keyword | Ag-water nanofluid Darcy-Forchheimer porous medium Solar radiation Suction/injection Mechanical Engineering Vibration, Dynamical Systems, Control Industrial and Production Engineering |
Content Type | Text |
Resource Type | Article |
Subject | Mechanics of Materials Mechanical Engineering |
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