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FYP 1 PROPOSAL PRESENTATION OF NUR HANANI BINTI RUZLI
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Assalamualaikum and good day everyone,
Title of FYP1:
Numerical Analysis Of Natural Convection Heat Transfer Of Solid Vertical Cylinder Heat Sink With Perforated Branched Fins
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Summary of this FYP1 Proposal Presentation:
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With the rapid growth and globalization, technologies are becoming increasingly important in all aspect of life. Many industrial system are utilizing the modern technologies which increases the consumption of the time spend and processing rate. With the increase in consumption, the heat transfer in critical cooling applications must be increased as well to avoid unbalanced power distribution in the system which will results in system failures or overheating problems. The main objective of the present study is to is to compare the thermal performance of existing model with a new heat sink model design. A solid vertical cylindrical heat sink with different geometries of branched fin and addition of splitter such as 20% notched, 30% notched, forward splitter and backward splitter will be evaluated under natural convection heat transfer. It is predicted that the heat transfer characteristics of the proposed design branched fin will be superior than that of the conventional branched fin design from previous study.
Title of FYP1:
Numerical Analysis Of Natural Convection Heat Transfer Of Solid Vertical Cylinder Heat Sink With Perforated Branched Fins
.
.
Summary of this FYP1 Proposal Presentation:
.
.
With the rapid growth and globalization, technologies are becoming increasingly important in all aspect of life. Many industrial system are utilizing the modern technologies which increases the consumption of the time spend and processing rate. With the increase in consumption, the heat transfer in critical cooling applications must be increased as well to avoid unbalanced power distribution in the system which will results in system failures or overheating problems. The main objective of the present study is to is to compare the thermal performance of existing model with a new heat sink model design. A solid vertical cylindrical heat sink with different geometries of branched fin and addition of splitter such as 20% notched, 30% notched, forward splitter and backward splitter will be evaluated under natural convection heat transfer. It is predicted that the heat transfer characteristics of the proposed design branched fin will be superior than that of the conventional branched fin design from previous study.