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Paper Title: Thermal Performance Analysis of Closed Two-Phase Thermosyphon charged with Using Varying Percentage of Ethanol and AL2O3 Nanofluids.
Authors Name: Bhimrao Chimaji Markand , Mr. H. G. Patil
Unique Id: IJRTI1709026
Published In: Volume 2 Issue 9, September-2017
Abstract: Abstract -Thermal performance of thermosyphon is most significant piece in the field of thermal engineering. Thermosyphon are a massive prospect towards cooling of high heat dissipating electronics. The implementation of a two phase closed thermosyphon for checking the thermal performance is being presented in this project. The thermosyphon work on the principle of evaporation and condensation and thus enhances large amount of heat. The working fluid used is ethanol and the second trial was done by addition of suspended particles of 10 nm aluminum powder in solution of ethanol 10 % by volume. The four factors were studied; the effect of heat load, the effect of working fluid types, the effects of flow rates of cooling water and the inclination with vertical. It is observed that heat transfer increases as heat load increases, heat transfer increases by using Al2O3 Nano fluid than ethanol. As flow rates of cooling water decreases the heat transfer increases. The maximum heat transfer takes place at vertical orientation (i.e.90⁰) and also as the inclination decreases the heat transfer also decreases. Thermal efficiency of thermosyphon changes with mass attentiveness of nanoparticle as well as working fluid, inclination angle, particle size of nanoparticle, shape of nanoparticle etc
Keywords: Thermosyphon, heat pipe,
Cite Article: "Thermal Performance Analysis of Closed Two-Phase Thermosyphon charged with Using Varying Percentage of Ethanol and AL2O3 Nanofluids.", International Journal of Science & Engineering Development Research (www.ijrti.org), ISSN:2455-2631, Vol.2, Issue 9, page no.161 - 165, September-2017, Available :http://www.ijrti.org/papers/IJRTI1709026.pdf
Downloads: 00061
Publication Details: Published Paper ID: IJRTI1709026
Registration ID:170541
Published In: Volume 2 Issue 9, September-2017
DOI (Digital Object Identifier):
ISSN Number: 2456 - 3315
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