Influence of phase change material (PCM) parameters on the thermal performance of lightweight building walls with different thermal resistances
Author:
Publisher
Elsevier BV
Subject
Fluid Flow and Transfer Processes,Engineering (miscellaneous)
Reference65 articles.
1. Testing of microencapsulated phase-change heat storage in experimental model houses under winter weather conditions;Németh;Build. Environ.,2021
2. Experimental set-up for testing active and passive systems for energy savings in buildings–lessons learnt;Gracia;Renew. Sustain. Energy Rev.,2018
3. Review on optimization of phase change parameters in phase change material building envelopes;Cai;J. Build. Eng.,2020
4. Multi-dimensional optimization of the incorporation of PCM-drywalls in lightweight steel-framed residential buildings in different climates;Soares;Energy Build.,2014
5. Energy performance of building envelopes integrated with phase change materials for cooling load reduction in tropical Singapore;Lei;Appl. Energy,2016
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