3D Modeling of the Thermal Transfer through Precast Buildings Envelopes
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Mohamed Bakhouya | Soukayna Berrabah | Mohamed Ould Moussa | M. Bakhouya | Soukayna Berrabah | M. Moussa
[1] Mohamed Bakhouya,et al. Towards a thermo-mechanical characterization approach of buildings’ envelope , 2020 .
[2] M. Garoum,et al. Three-dimensional numerical simulation of conduction, natural convection, and radiation through alveolar building walls , 2019 .
[3] M. Ha,et al. An exhaustive review of studies on natural convection in enclosures with and without internal bodies of various shapes , 2019, International Journal of Heat and Mass Transfer.
[4] Mohamed Bakhouya,et al. An energy management platform for micro-grid systems using Internet of Things and Big-data technologies , 2019, J. Syst. Control. Eng..
[5] Energy Policies Beyond IEA Countries: Morocco 2019 , 2019, Energy Policies Beyond IEA Countries.
[6] S. Boulmrharj,et al. Battery Characterization and Dimensioning Approaches for Micro-Grid Systems , 2019, Energies.
[7] S. Boulmrharj,et al. Towards a Battery Characterization Methodology for Performance Evaluation of Micro-Grid Systems , 2018, 2018 International Conference on Smart Energy Systems and Technologies (SEST).
[8] S. Boulmrharj,et al. Towards a context-driven platform using IoT and big data technologies for energy efficient buildings , 2017, 2017 3rd International Conference of Cloud Computing Technologies and Applications (CloudTech).
[9] Wenxian Lin,et al. Conjugate natural convection heat transfer in a partitioned differentially-heated square cavity , 2017 .
[10] E. Dari,et al. Natural convection in a cubical cavity filled with a fluid showing temperature-dependent viscosity , 2015 .
[11] S. Usman,et al. Natural Convection Heat Transfer in a Square Cavity with Sinusoidal Roughness Elements , 2015 .
[12] Alkama Djamel,et al. An Assessment of Thermal Comfort and Users’ “Perceptions” in Office Buildings - Case of Arid Areas with Hot and Dry Climate - , 2015 .
[13] Giorgio Baldinelli,et al. Infrared Thermography Assessment of Thermal Bridges in Building Envelope: Experimental Validation in a Test Room Setup , 2014 .
[14] J. Salençon,et al. Handbook of Continuum Mechanics: General Concepts Thermoelasticity , 2012 .
[15] Y. Candau,et al. An application of spectral decomposition to model validation in the thermal analysis of buildings , 1993 .
[16] K. Pericleous,et al. Laminar and turbulent natural convection in an enclosed cavity , 1984 .
[17] G. D. Davis. Natural convection of air in a square cavity: A bench mark numerical solution , 1983 .
[18] H. Karataş,et al. Natural convection and radiation in rectangular cavities with one active vertical wall , 2018 .
[19] Mohamed Bakhouya,et al. On the use of IoT and Big Data Technologies for Real-time Monitoring and Data Processing , 2017, EUSPN/ICTH.
[20] Fadwa Lachhab,et al. Energy-Efficient Buildings as Complex Socio-technical Systems: Approaches and Challenges , 2017 .
[21] F. Fantozzi,et al. Simulation of the Thermal Behaviour of a Building Retrofitted with a Green Roof: Optimization of Energy Efficiency with Reference to Italian Climatic Zones , 2016 .
[22] George W. Sidebotham. Nusselt Number Correlations , 2015 .
[23] Yordan Kyosev,et al. The finite element method (FEM) and its application to textile technology , 2012 .
[24] Luis Pérez-Lombard,et al. A review on buildings energy consumption information , 2008 .