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Main Authors: Shaikh, Shakil, Jadhav, Suraj, Kharote, Laukik, Relekar, Ronit, Joshi, Amey, Chaudhari, Mangesh
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Published: Zenodo 2025
Online Access:https://doi.org/10.5281/zenodo.18103676
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author Shaikh, Shakil
Jadhav, Suraj
Kharote, Laukik
Relekar, Ronit
Joshi, Amey
Chaudhari, Mangesh
author_facet Shaikh, Shakil
Jadhav, Suraj
Kharote, Laukik
Relekar, Ronit
Joshi, Amey
Chaudhari, Mangesh
contents <div>This dataset provides the underlying data for the manuscript <strong>"Heat Transfer Analysis of Heat Sink"</strong>, Submission ID <strong>BMSE-D-25-04618</strong> (p. 1). It includes the raw and processed data generated from Computational Fluid Dynamics (CFD) simulations performed using <strong>ANSYS Fluent</strong> (p. 2).</div> <div>The data files (in Excel format) contain the calculated values for key performance metrics:</div> <ul> <li><span><strong>Thermal resistance</strong> (</span> <div> <div>Rthbold cap R sub bold t bold h end-sub</div> </div> <span><span></span>) (p. 5)</span></li> <li><span><strong>Average heat transfer coefficient</strong> (</span> <div> <div>harraybold h sub bold a bold r bold r bold a bold y end-sub</div> </div> <span><span></span>) (p. 5)</span></li> </ul> <div>Data is provided for three different heat sink geometries analyzed in the study:</div> <ul> <li><span>Solid rectangular fins (baseline case) (p. 4)</span></li> <li><span>Uniformly perforated fins (3 mm and 6 mm diameters) (p. 4)</span></li> <li><span>Alternating perforated fins (3 mm and 6 mm diameters) (p. 4)</span></li> </ul> <div>This data was used to create the figures and tables presented in the associated publication. A separate <strong>README file</strong> is included to explain the column headers and content of each Excel file.</div>
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spellingShingle Excel Data from Heat Transfer Analysis of Heat Sink Study
Shaikh, Shakil
Jadhav, Suraj
Kharote, Laukik
Relekar, Ronit
Joshi, Amey
Chaudhari, Mangesh
<div>This dataset provides the underlying data for the manuscript <strong>"Heat Transfer Analysis of Heat Sink"</strong>, Submission ID <strong>BMSE-D-25-04618</strong> (p. 1). It includes the raw and processed data generated from Computational Fluid Dynamics (CFD) simulations performed using <strong>ANSYS Fluent</strong> (p. 2).</div> <div>The data files (in Excel format) contain the calculated values for key performance metrics:</div> <ul> <li><span><strong>Thermal resistance</strong> (</span> <div> <div>Rthbold cap R sub bold t bold h end-sub</div> </div> <span><span></span>) (p. 5)</span></li> <li><span><strong>Average heat transfer coefficient</strong> (</span> <div> <div>harraybold h sub bold a bold r bold r bold a bold y end-sub</div> </div> <span><span></span>) (p. 5)</span></li> </ul> <div>Data is provided for three different heat sink geometries analyzed in the study:</div> <ul> <li><span>Solid rectangular fins (baseline case) (p. 4)</span></li> <li><span>Uniformly perforated fins (3 mm and 6 mm diameters) (p. 4)</span></li> <li><span>Alternating perforated fins (3 mm and 6 mm diameters) (p. 4)</span></li> </ul> <div>This data was used to create the figures and tables presented in the associated publication. A separate <strong>README file</strong> is included to explain the column headers and content of each Excel file.</div>
title Excel Data from Heat Transfer Analysis of Heat Sink Study
url https://doi.org/10.5281/zenodo.18103676