Evaluation of Phase-change Material Performance in Hot and Dry Climate for Building Efficiency
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Begellhouse
Reference20 articles.
1. Urge-Vorsatz, D., Cabeza, L. F., Serrano, S., Barreneche, C., and Petrichenko, K., 2015, 'Heating and Cooling Energy Trends and Drivers in Buildings,' Renew. Sustain. Energy Rev., 41, pp. 85-98.
2. Liu, S., Zhu, K., Cui, S., Shen, X., and Tan, G., 2018, 'A Novel Building Material with Low Thermal Conductivity: Rapid Synthesis of Foam Concrete Reinforced Silica Aerogel and Energy Performance Simulation,' Energy Build., 177, pp. 385-393.
3. Lee, H., Choi, C. ho, and Seo, J., 2018, 'Development of a Wall Module Employing Aircap Layers,' Energy Build., 177, pp. 413-422.
4. Fort, J., Trnik, A., Pavlikova, M., Pavlik, Z., and Cerny, R., 2018, 'Fabrication of Dodecanol/Diatomite Shape-Stabilized PCM and Its Utilization in Interior Plaster,' Int. J. Thermophys., 39(12).
5. Kuznik, F., and Virgone, J., 2009, 'Experimental Assessment of a Phase Change Material for Wall Building Use,' Appl. Energy, 86(10), pp. 2038-2046.
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