Comparative study of performance enhancement of latent thermal energy storage system with copper porous fin
Author:
Publisher
Elsevier BV
Subject
Electrical and Electronic Engineering,Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment
Reference44 articles.
1. Study of shrinkage effect of aluminium based binary alloys as phase change materials for latent heat thermal energy storage applications;Katiyar;J Energy Storage,2022
2. Response Surface Methodology-based prediction model for working fluid temperature during stand-alone operation of vertical cylindrical thermal energy storage tank;Khurana;Renew. Energy,2022
3. Thermal and structural characterisations of packed bed thermal energy storage with cylindrical micro-encapsulated phase change materials;Kumar;J Energy Storage,2022
4. A review of thermal energy storage technologies for seasonal loops;Mahon;Energy,2022
5. Low temperature phase change materials for thermal energy storage: current status and computational perspectives;Hameed;Sustainable Energy Technologies and Assessments.,2022
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