Composite phase change materials for thermal energy storage: From molecular modelling based formulation to innovative manufacture
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Elsevier BV
Reference14 articles.
1. Energy storage technologies and real life applications-A state of the art review;Aneke;Appl. Energy,2016
2. Thermal energy storage: Challenges and the role of particle technology;Ge;Particuology,2014
3. Carbonate-salt-based composite materials for medium- and high-temperature thermal energy storage;Ge;Particuology,2014
4. Composite materials for thermal energy storage: Enhancing performance through microstructures;Ge;ChemSusChem,2014
5. Heat transfer enhancement of high temperature thermal energy storage using metal foams and expanded graphite;Zhao;Sol. Energy Mater. Sol. Cells,2011
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2. Numerical Simulation Study on Structure Optimization and Performance Improvement of Hot Water Storage Tank in CHP System;Energies;2020-09-11
3. Comparison study between mesoporous silica nanoscale microsphere and active carbon used as the matrix of shape-stabilized phase change material;Scientific Reports;2019-11-05
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