A Simple Trombe Wall Enhanced with a Phase Change Material: Building Performance Study
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Publisher
Springer Singapore
Link
https://link.springer.com/content/pdf/10.1007/978-981-16-6269-0_24
Reference10 articles.
1. Omrany, H., Ghaffarianhoseini, A., Ghaffarianhoseini, A., Raahemigar, K., Tookey, J.: Application of passive wall system for improving the energy efficiency in building: a comprehensive review. Renew. Sustain. Energy Rev. 62, 1252–1269 (2016)
2. Zhu, N., Li, S., Hu, P., Lei, F., Deng, R.: Numerical investigation on performance of phase change material Trombe wall in building. Energy 187, 116057 (2019)
3. Oluah, C., Akinlabi, E.T., Njoku, H.O.: Selection of phase change material for improved performance of Trombe wall system using the entropy weight and TOPSIS methodology. Energy Build. 217, 109967 (2020)
4. Sergei, K., Shen, C., Jiang, Y.: A review of the current work potential of a trombe wall. Renew. Sustain. Energy Rev. 130, 109947 (2020)
5. Omara, A.A.M., Abuelnuor, A.A.A.: Trombe walls with phase change materials: a review. Energy Storage, e123 (2020)
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