Experimental Investigation of Heat Sinks with and Without …
283
Fig. 8 Validation of present work with literature
Acknowledgements Authors would like to thank the Director and Principal of Jain College of
Engineering, Belagavi, for financial assistance. Sincere thanks to Head of Mechanical Engineering
Department for the infrastructure support and motivation through the work.
References
1. Starner KE, McManus HN (1963) An experimental investigation of free convection heat transfer
from rectangular fin arrays. J Heat Transf 85:273–278
2. Elenbaas W (1942) Heat dissipation of parallel plates by free convection. Physica 9(1)
3. Harahap F, McManus HN (1967) Natural convection heat transfer from horizontal rectangular
fin arrays. Trans ASME Ser C J Heat Transf 89:32–38
4. Leung CW, Probert SD, Shilston MJ (1985) Heat exchanger design: thermal performances of
rectangular fins protruding from vertical or horizontal rectangular bases. Appl Energy 19:287–
300
5. Leung CW, Probert SD (1989) Thermal effectiveness of short-protrusion rectangular, heatexchanger fins. Appl Energy 34:1–8
6. Leung CW, Probert SD (1997) Heat-exchanger performance: influence of gap width between
consecutive vertical rectangular fin-arrays. Appl Energy 56(1):1–8
7. Yuncu H, Guvenc A (2001) An experimental investigation on the performance of rectangular
fins on a vertical base in free convection heat transfer. Heat Mass Transf 37:409–416
8. Awasarmol UV, Pise AT (2015) An experimental investigation of natural convection heat
transfer enhancement from perforated rectangular fins array at different inclinations. Exp Therm
Fluid Sci 68:145–154
9. Kline SJ, McClintock FA (1953) Describing uncertainties in single sample experiments. Mech
Eng 3–8
10. Yazicioglu B (2005) Performance of rectangular fins on a vertical base in free convection heat
transfer. Thesis of M.S. in Mechanical Engineering
283
Fig. 8 Validation of present work with literature
Acknowledgements Authors would like to thank the Director and Principal of Jain College of
Engineering, Belagavi, for financial assistance. Sincere thanks to Head of Mechanical Engineering
Department for the infrastructure support and motivation through the work.
References
1. Starner KE, McManus HN (1963) An experimental investigation of free convection heat transfer
from rectangular fin arrays. J Heat Transf 85:273–278
2. Elenbaas W (1942) Heat dissipation of parallel plates by free convection. Physica 9(1)
3. Harahap F, McManus HN (1967) Natural convection heat transfer from horizontal rectangular
fin arrays. Trans ASME Ser C J Heat Transf 89:32–38
4. Leung CW, Probert SD, Shilston MJ (1985) Heat exchanger design: thermal performances of
rectangular fins protruding from vertical or horizontal rectangular bases. Appl Energy 19:287–
300
5. Leung CW, Probert SD (1989) Thermal effectiveness of short-protrusion rectangular, heatexchanger fins. Appl Energy 34:1–8
6. Leung CW, Probert SD (1997) Heat-exchanger performance: influence of gap width between
consecutive vertical rectangular fin-arrays. Appl Energy 56(1):1–8
7. Yuncu H, Guvenc A (2001) An experimental investigation on the performance of rectangular
fins on a vertical base in free convection heat transfer. Heat Mass Transf 37:409–416
8. Awasarmol UV, Pise AT (2015) An experimental investigation of natural convection heat
transfer enhancement from perforated rectangular fins array at different inclinations. Exp Therm
Fluid Sci 68:145–154
9. Kline SJ, McClintock FA (1953) Describing uncertainties in single sample experiments. Mech
Eng 3–8
10. Yazicioglu B (2005) Performance of rectangular fins on a vertical base in free convection heat
transfer. Thesis of M.S. in Mechanical Engineering
