Techno-Economic Pathways for Retrofitting Urban Residential Buildings with Solar Photovoltaics: Enabling Smart Grid Transition in Alexandria, Egypt
DOI:
https://doi.org/10.61212/الكلمات المفتاحية:
Egypt، Alexandria، Sustainable Cities، Renewable Energyالملخص
The residential sector in Alexandria, Egypt, consumes a considerable portion of the total electricity use, but energy efficiency and renewable integration have not been much studied. This paper proposes a novel framework for retrofitting existing residential buildings with building-integrated photovoltaic (BIPV) systems connected to smart grids that allow passive consumers to become active players in decentralized energy networks. The study adopts an analytical design-research methodology that integrates field surveys, GIS mapping, digital simulations, and solar performance modeling within the Al-Shalalat district. Monocrystalline silicon PV modules were optimized for roof and façade integration by considering shading and spatial constraints. Results show that 55% of buildings can generate surplus electricity while 45% partially meet their demand indicating high potential for residential solar retrofitting. This paper will further describe the importance of smart grids as a prerequisite to achieve efficient energy distribution, load management, and household engagement. Recommendations include comprehensive building and consumption databases, financial incentives, façade-integrated PV research, public awareness campaigns, and ICT infrastructure.
المراجع
منشور
إصدار
القسم
الرخصة
الحقوق الفكرية (c) 2026 مجلة التطوير العلمي "للدراسات والبحوث" JSD

هذا العمل مرخص بموجب Creative Commons Attribution 4.0 International License.


