Advanced Materials, Computational Modeling and Clean Energy Technologies for Sustainable and Low-Carbon Built Environments

Advanced Materials, Computational Modeling and Clean Energy Technologies for Sustainable and Low-Carbon Built Environments
Details
Research Project Number:
RP-NASS-2026-030
Academic Lead:
Dr. Abdellah Idrissi
Co-academic leads:
Dr. Mohammed Fellah
Deadline:
31 December 2027
Dr. Abdellah Idrissi

Prof. Dr. Abdellah Idrissi

ORCID: (0009-0009-1868-5654) - ORCID

Affiliation: Laboratory of Energy Engineering and Materials (LEEM), Faculty of Sciences and Technologies, Sultan Moulay Slimane University, Beni Mellal, Morocco

E-Mail: abdellah.idrissi001@gmail.com

Scopus:https://www.scopus.com/authid/detail.uri?authorId=16642413200

Research Interests:Computational Fluid Dynamics (CFD); Building Energy Efficiency; Heat and Mass Transfer; HVAC and Ventilation; Indoor Environmental Quality; Thermal Comfort; Clean Energy Systems; Sustainable and Low-Carbon Buildings; Numerical Modeling and Optimization.

Research objectives:

The transition toward sustainable and low-carbon built environments requires the integration of advanced building materials, clean energy technologies, and high-performance computational approaches. This Research Project aims to bring together recent advances in sustainable building materials, computational fluid dynamics (CFD), building energy efficiency, heat and mass transfer, thermal energy storage, HVAC and ventilation, renewable energy integration, and numerical optimization.

The project welcomes original research and review articles combining experimental, numerical, and computational approaches to improve the thermal, aerodynamic, and energy performance of buildings and energy systems. Particular attention is given to innovative materials, energy-efficient technologies, thermal comfort, clean energy systems, and advanced modeling and optimization methods.

The overall objective is to promote multidisciplinary solutions for reducing energy consumption and carbon emissions and supporting the development of sustainable, resilient, and low-carbon built environments.

Keywords:

  • Sustainable Building Materials
  • Computational Fluid Dynamics (CFD)
  • Building Energy Efficiency
  • Clean and Renewable Energy
  • Heat and Mass Transfer
  • Thermal Energy Storage
  • HVAC and Ventilation
  • Thermal Comfort
  • Low-Carbon Built Environment
  • Numerical Modeling and Optimization

Expected Outcomes:

Academic: Peer-reviewed publications

Co-academic lead:
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Dr. Mohammed Fellah

Affiliation: M2S2I Laboratory, ENSET, Hassan II University, Mohammedia, Morocco
Mail: fellahmohammed349@gmail.com
ORCID: https://orcid.org/0000-0003-3429-7351
Scopus: https://www.scopus.com/authid/detail.uri?authorId=58476473400
Research Interests: Building Energy Efficiency; Sustainable and Bio-Based Building Materials; Thermal Insulation; Heat Transfer; Building Thermal Performance; Numerical Simulation; Heating and Cooling Loads; Thermal Comfort; Sustainable Building Design.

 
Researchers:
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Dr. El Bachir Abddaim

Affiliation: Laboratory of Materials, Processes, Environment, and Quality (LMPEQ), National School of Applied Sciences, Cadi Ayyad University, Safi, Morocco
Mail: e.abddaim.ced@uca.ac.ma
Scopus: https://www.scopus.com/authid/detail.uri?authorId=58927423400
Research Interests: Thermal Energy Storage; Heat Transfer; Computational Fluid Dynamics (CFD); Thermal Energy Systems; Energy Efficiency; Numerical Modeling and Optimization.

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Dr. Brahim Addou

Affiliation: Laboratory of Energy Engineering and Materials (LEEM), Faculty of Science and Technology, Sultan Moulay Slimane University, BP 591, Beni Mellal 23000, Morocco
Mail: brahim.addou@usms.ma
Scopus: https://www.scopus.com/authid/detail.uri?authorId=59196416500
Research Interests: Lattice Boltzmann Method (LBM); Computational Fluid Dynamics (CFD); Nanofluid Flow; Conjugate Heat Transfer; Microchannel Heat Exchangers; Microscale Heat Transfer; Thermal Management; Numerical Modeling.

Journal of Building Material Science (JBMS)

Journal of Building Material Science
ISSN:
2630-5216 (Online)
Frequency:
Quarterly (March, June, September, and December)
Indexing: Chemical Abstracts Services (CAS), J-Gate, BASE, Citefactor, Scilit, Index Copernicus, WorldCat, CQVIP, Baidu Scholar, MyScienceWork, Crossref

Publisher: Bilingual Publishing Group

Submit an Article

Clean Energy Science and Technology (CEST)

Clean Energy Science and Technology
ISSN:
2972-4910 (Online)
Frequency:
Bimonthly
Indexing: Scopus, Scilit, EuroPub database

Publisher: Universe Scientific Publishing Pte. Ltd.

Submit an Article

Note:

-  Manuscripts under this research project are intended for publication in the above journals.

-  Academic Lead, Co-AL, and potential contributors may choose the appropriate journal for submission according to the needs. When submitting, please select “Research Project”​ in the OJS (Open Journal Systems) backend.

- For any questions (e.g., paper submission details, process), please contact :
   Research Project Coordinator: Yvonne Yang
   Email: yvonne@nassg.net