Achieving heat storage coatings from ethylene vinyl acetate copolymers and phase change nano-capsules with excellent flame-retardant and thermal comfort performances
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Elsevier BV
Reference68 articles.
1. A review of data-driven approaches for prediction and classification of building energy consumption;Wei;Renew. Sustain. Energy Rev.,2018
2. Dynamically assessing life cycle energy consumption of buildings at a national scale by 2020: an empirical study in China;Liu;Energ. Buildings,2023
3. A review on research and development of passive building in China;Lin;J. Build. Eng.,2021
4. Phase change material (PCM) integrations into buildings in hot climates with simulation access for energy performance and thermal comfort: a review;Zhan;Construct. Build Mater.,2023
5. Energy-saving of building envelope using passive PCM technique: a case study of Kuwait City climate conditions;Al-Rashed;Sustain Energy Technol Assess,2021
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