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Title: | Effect of fin orientation on pcm melting in a spherical enclosure for latent heat storage |
Authors: | Sharma, Avadhesh Kumar Kothari, Rohit Kumar, Anuj Sahu, Santosh Kumar |
Keywords: | Computation theory;Computational methods;Enclosures;Fins (heat exchange);Heat storage;Heat transfer performance;Laminar flow;Phase change materials;Spheres;Computational model;Laminar flow conditions;Melting conditions;Numerical investigations;Numerical methodologies;Numerical results;Orientation angles;Spherical capsule;Melting |
Issue Date: | 2021 |
Publisher: | American Society of Mechanical Engineers (ASME) |
Citation: | Sharma, A., Kothari, R., Kumar, A., & Sahu, S. K. (2021). Effect of fin orientation on pcm melting in a spherical enclosure for latent heat storage. Paper presented at the American Society of Mechanical Engineers, Power Division (Publication) POWER, , 2021-July doi:10.1115/POWER2021-65622 |
Abstract: | The present work is focused on numerical investigation of melting of Phase change material (PCM) filled in a spherical capsule integrated with a metallic fin. n-octadecane having melting temperature of 28o C is selected as PCM and aluminum is considered as fin material. The effect of fin orientation on PCM melting in a spherical enclosure is analyzed considering constrained melting conditions. The orientation angle of the fin is varied from 0-30o in both clockwise and anticlockwise directions. The computational model is considered as two dimensional axisymmetric with laminar flow condition. To ascertain the validity of our numerical methodology present computational model is validated with the test results available in the literature and are found to be in good agreement. The numerical result reveals that employing fin at the center of the capsule (? = 0o) decreases the melting time and increases the heat transfer performance of the system. © 2021 American Society of Mechanical Engineers (ASME). All rights reserved. |
URI: | https://doi.org/10.1115/POWER2021-65622 https://dspace.iiti.ac.in/handle/123456789/6729 |
ISBN: | 9780791885109 |
Type of Material: | Conference Paper |
Appears in Collections: | Department of Mechanical Engineering |
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