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Dynamic state-space model and performance analysis for solar active walls embedded phase change material

Dynamic state-space model and performance analysis for solar active walls embedded phase change material
Abstract Building-based active envelopes play an important role to reduce active heating supplies. Several techniques are developed to enhance the energy performances of active building envelopes; meanwhile, numerous numerical and mathematical models are also developed to conduct the performance analysis of these techniques. In this paper, we propose a state-space model for solar active wall-based Phase Change Materials (PCM). The advantage of this method remains in its simplicity to provide details of internal nodes and input/output parameters. The low-cost calculation is a supplementary advantage versus a heavy numerical method. The proposed numerical model is applied for a multi-layer wall with PCM Wallboards (PCMW) embedded between indoor and outdoor environments. The results show the ability of the state-space model to estimate the thermal behavior of the system, as well as the thermal characteristics of embedding PCM in the internal face of the wall. It significantly contributes to stabilize the indoor temperature and to ensure the thermal comfort.
- Laboratoire d'Etude et de Recherche sur le Matériau Bois France
- Metz Germany
- Metz Germany
- Abdelmalek Essaâdi University Morocco
- Laboratoire d'Etude et de Recherche sur le Matériau Bois France
[SPI]Engineering Sciences [physics]
[SPI]Engineering Sciences [physics]
3 Research products, page 1 of 1
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