Energy Efficiency in Buildings Envelope
Keywords:
Energy efficency (RTCM), Natural ventilation, Air infiltration, BuildingAbstract
Morocco has a well-developed institutional and legal framework and an agile private sector. This is the basis for energy efficiency in buildings projects, especially in the residential and tertiary sector. Enforcement and development of further regulations and of financial mechanisms for residential housing .So this Energy efficiency and thermal comfort in buildings have become increasingly important in recent years due to growing concerns about climate change, resource conservation, and occupant well-being. As a result, international standards have been developed to guide and regulate the design and operation of buildings with the goal of optimizing energy consumption, while providing comfortable and healthy indoor environments. This led to several key international standards and Regulations to be introduced that play a significant role in shaping the energy performance and thermal comfort of buildings worldwide. By understanding and adhering to these standards, building professionals can contribute to a more sustainable and energy-efficient future. The recommends prioritizing natural ventilation strategies and minimizing infiltration in building design and construction for building professionals, designers, and architects. It calls for regulatory authorities to revise building codes and regulations to better account for the effects of air infiltration and natural ventilation on energy performance. The research also encourages further investigation in the field of natural ventilation and infiltration to promote sustainable, energy-efficient, and bioclimatic building.
References
Rapport Haut-Commissariat au plan – Maroc.
W.Z. Huang, M. Zaheeruddin, S.H. Cho, Dynamic simulation of energy management control functions for HVAC systems in buildings, Energy Conversion and Management 47 (7-8), 926-943 (2006).
Attia, S., Van Moeseke, G. (2013) Bioclimatic Design in Casablanca: Decision Support through Building Performance Simulation, Subtropical Cities, Fort Lauderdale, Florida, October 17-19.
Haines, A., Kovats, R. S., Campbell-Lendrum, D., Corvalan, C. (2006) Climate change and human health: Impacts, vulnerability and public health, Public health 120(7):585-596.
Daanen, H. A., Jonkhoff, W., Bosch, P., ten Broeke, H. (2013) The effect of global warming and urban heat islands on mortality, morbidity and productivity in The Netherlands, Cotter, J. D., Lucas, S.J.E. , Mündel T. (eds.):16.
Malys, L., Musy, M., Inard, C. (2015) Microclimate and building energy consumption: study of different coupling methods, Advances in Building Energy Research 9(2):151-174.
McCarthy, M. P., Best, M. J., Betts, R. A. (2010) Climate change in cities due to global warming and urban effects, Geophysical Research Letters 37(9).
Li, D., Bou-Zeid, E. (2013) Synergistic Interactions between Urban Heat Islands and Heat Waves: The Impact in Cities Is Larger than the Sum of Its Parts, Journal of Applied Meteorology and Climatology 52(9):2051-2064.
TESS - Thermal Energy Systems Specialists LLC-TESS Libraries- indivisual component librarie;2016.http://www.trnsys.com/tess-libraries/individualcomponents.php? [Accessed 9 February 2016].
ASHRAE 90.1 modelling for advanced DesignBuilder / EnergyPlus users. It is undergoing ongoing development of calculation of HVAC Energy Consumption http://www.eere.energy.gov/buildings/energyplus/documentation.cfm.
Lamberg, P., Sirén, K. Phase change materials in building construction materials- State-of-the-art examination, Helsinki University of Technology, HVAC Laboratory, Report B56. 71 p. (In Finnish).
Jamil, D.B.; Mishra, M.; Sahoo, P.K. Performance studies of hybrid solid desiccant - vapor compression air-conditioning system for hot and humid climates. Energy Build. 2015, 102, 284-292.
Wan, K.K.W.; Li, D.H.W.; Liu, D.; Lam, J.C. Future trends of building heating and cooling loads and energy consumption in di_erent climates. Build. Environ. 2011, 46, 223-234.
F.P. López, R.L. Jensen, P. Heiselberg, M. Ruiz de Adana Santiago, Experimental analysis and model validation of an opaque ventilated façade, Building Environment 56 (2012).
C.Aparicio-Fernández,J.LVivancos,P.Ferrer-Gisbert,R.Royo-Pastor.Energy performance of a ventilated façade by simulation with experimental validation. Applied Thermal Engineering 66 (2014).
BENACHIR, Nouhaila, TAOUFIQ, Mouhib, et FARIDA, Bendriaa. The Energy Performance of the Building Envelope Using Phase Change Materials. Available at SSRN 4503411, 2023.
Benachir, Nouhaila, Farida Bendriaa, and Taoufiq Mouhib. "Importance of a Building Envelope Design With Phase-change Materials (PCM)." Available at SSRN 4541448 (2023). Benachir, Nouhaila & Farida, Bendriaa & Mouhib, Taoufiq. (2023). Importance of a Building Envelope Design With the Phase-Change Materials (PCM). SSRN Electronic Journal. 10.2139/ssrn.4526601.
BENACHIR, Nouhaila, TAOUFIQ, Mouhib, et FARIDA, Bendriaa. Thermal Energy in the Building Envelope Using Phase Change Materials. Available at SSRN 4527976, 2023 . Benachir, Nouhaila & Mouhib, Taoufiq & Farida, Bendriaa. (2023). Thermal Energy in the Building Envelope Using Phase Change Materials. SSRN Electronic Journal. 10.2139/ssrn.4527976.
Benachir Nouhaila Maghrebian Journal of Pure and Applied Science e-ISSN : 2458-715X Copyright © 2023, Université Mohammed Premier Oujda Maroc .Maghr. J. Pure & Applied Sci, 2022, Vol. 8, Issue 2, Page 63- 81 https://revues.imist.ma/index.php/mjpas. Benachir et al, Maghr. J. Pure & Appl Sci, 2022, Vol. 8, Issue 2, Page 1-19. CREATING AN ENERGY-EFFICIENT BUILDING ENVELOPE BASED ON PHASE-CHANGE MATERIALS (PCM).
BENACHIR, Nouhaila, MOUHIB, Taoufiq, et BENDRIAA, Farida. Impact the Solar Ventilation on Thermal Comfort and Energy Efficiency of Buildings Using Phase Change Materials. Available at SSRN 4533521, 2023 . Benachir, Nouhaila & Mouhib, Taoufiq & Bendriaa, Farida. (2023). Impact the Solar Ventilation on Thermal Comfort and Energy Efficiency of Buildings Using Phase Change Materials. SSRN Electronic Journal. 10.2139/ssrn.4533521.
BENACHIR, NOUHAILA & Mouhib, Taoufiq & Bendriaa, Farida. (2023). Evolution the Energy in the Building Envelope Using Phase Change Materials. 10.2139/ssrn.4489421. Benachir Nouhaila , Evolution the Energy in the Building Envelope Using Phase Change Materials .
NOUHAILA, Benachir, TAOUFIQ, Mouhib, et FARIDA, Bendriaa. Role of the solar powered mechanical ventilation and the phase change materials on thermal comfort and electrical energy of buildings envelope. Journal of Pharmaceutical Negative Results, 2022, p. 1962-1982 . Role of the Solar Powered Mechanical Ventilation and the Phase Change Materials on Thermal Comfort and Electrical Energy of Buildings Envelope”. 2022. Journal of Pharmaceutical Negative Results, October, 1962-82. https://doi.org/10.47750/pnr.2022.13.S01.232
Benachir Nouhaila , Research Article, J Nucl Ene Sci Power Generat Technol Vol: 11 Issue: 9. Increasing the Energy in the Building Envelope Using Phase Change Materials Nouhaila Benachir*, Taoufiq Mouhib and Farida Bendriaa. DOI:10.4172/2325-9809.1000292. Benachir N, Mouhib T, Bendriaa F (2022) Increasing the Energy in the Building Envelope Using Phase Change Materials. J Nucl Ene Sci Power Generat Technol 11:9. DOI: 10. 4172/2325-9809.1000292 Nuclear Journal Énergy Science & Pooù Genrestion Ttechnologie.
Benachir Nouhaila (2022). Paper ID APEN-MIT-2022_7337 JOURNAL Applied Energy Symposium:Journal. Improving the energy performance of the building envelope using phase-change materials. https://doi.org/10.46855/energy-proceedings-10065. NOUHAILA, BENACHIR, MOUHIB, TAOUFIQ, et BENDRIAA, FARIDA. Improving the energy performance of the building envelope using phase change materials .
BENACHIR, Nouhaila. Application of Aloe Vera-derived Plant-based Cell in a Smart Greenhouse. Available at SSRN 4516741 . Benachir, Nouhaila, Application of Aloe Vera-derived Plant-based Cell in a Smart Greenhouse. (July 20, 2023). Available at
SSRN: https://ssrn.com/abstract=4516741 or http://dx.doi.org/10.2139/ssrn.4516741
NOUHAILA, BENACHIR, MOUHIB, TAOUFIQ, et BENDRIAA, FARIDA. Effect of solar ventilation on thermal improvement and energy efficiency of buildings using phase change materials. Benachir Nouhaila 2022 Paper ID APEN-MIT-2022_8017 Applied Energy Symposium: Effect of solar ventilation on thermal improvement and energy efficiency of buildings using phase change materialshttps://doi.org/10.46855/energy-proceedings-10079.
Benachir Nouhaila , 41st WCASET Book (1).pdfConference Agenda, 41st WCASET-22 ETHYOPIA.pdf. BENACHIR, Benachir Nouhaila. GUIDE TECHNIQUE POUR LE CHAUFFAGE, LA CLIMATISATION ET LA VENTILATION.
Benachir Nouhaila Benachir, The Energy Performance of the Building Envelope Using Phase Change Materials. Benachir, Nouhaila and Taoufiq, Mouhib and Farida, Bendriaa, The Energy Performance of the Building Envelope Using Phase Change Materials (July 7, 2023). Available at
SSRN: https://ssrn.com/abstract=4503411 or http://dx.doi.org/10.2139/ssrn.4503411.
BENACHIR, Benachir Nouhaila et NOUHAILA, B. International Uni-Scientific Research Journal Vol. 3 (2022) 126-172. Powering Wireless IoT devices in a Smart Greenhouse, 2022 .Benachir Nouhaila Benachir, B. Nouhaila. / International Uni-Scientific Research JournalVol.3 (2022) 126-172. Powering Wireless IoT devices in a Smart Greenhouse. © 2022 IUSRJ. OpenAccess
Downloads
Published
Issue
Section
License
Copyright (c) 2024 International Journal of Applied Sciences: Current and Future Research Trends

This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License.
Authors who submit papers with this journal agree to the following terms.