![Sustainability | Free Full-Text | Evaluation of Melting Mechanism and Natural Convection Effect in a Triplex Tube Heat Storage System with a Novel Fin Arrangement Sustainability | Free Full-Text | Evaluation of Melting Mechanism and Natural Convection Effect in a Triplex Tube Heat Storage System with a Novel Fin Arrangement](https://www.mdpi.com/sustainability/sustainability-14-10982/article_deploy/html/images/sustainability-14-10982-g001.png)
Sustainability | Free Full-Text | Evaluation of Melting Mechanism and Natural Convection Effect in a Triplex Tube Heat Storage System with a Novel Fin Arrangement
![Schematic diagram of the partially wet fin of uniform thickness: (a)... | Download Scientific Diagram Schematic diagram of the partially wet fin of uniform thickness: (a)... | Download Scientific Diagram](https://www.researchgate.net/publication/273832228/figure/fig2/AS:294722171097094@1447278649675/Schematic-diagram-of-the-partially-wet-fin-of-uniform-thickness-a-Longitudinal-fin.png)
Schematic diagram of the partially wet fin of uniform thickness: (a)... | Download Scientific Diagram
Fin Configurations. (a) Straight Fin of uniform Cross -Section. (b)... | Download Scientific Diagram
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![A straight fin with uniform rectangular cross sectional geometry has a length L=20 mm, width w=50 mm, and thickens t=2 mm. Convective heat transfer occurs from all exposed surfaces including the fin A straight fin with uniform rectangular cross sectional geometry has a length L=20 mm, width w=50 mm, and thickens t=2 mm. Convective heat transfer occurs from all exposed surfaces including the fin](https://homework.study.com/cimages/multimages/16/03.07.156506350446448910662.jpg)
A straight fin with uniform rectangular cross sectional geometry has a length L=20 mm, width w=50 mm, and thickens t=2 mm. Convective heat transfer occurs from all exposed surfaces including the fin
![Show that the temperature distribution along an infinitely long pin fin is given by \frac{T-T_e}{T_B-T_e}=e^{-\beta x} Also find the heat dissipated by determining the base heat flow. | Homework.Study.com Show that the temperature distribution along an infinitely long pin fin is given by \frac{T-T_e}{T_B-T_e}=e^{-\beta x} Also find the heat dissipated by determining the base heat flow. | Homework.Study.com](https://homework.study.com/cimages/multimages/16/untitled32690225659278541.png)