Overview of Integrating Renewable Energy Systems inBuilding Design for Energy-Efficiency

Volume: 11 | Issue: 2 | Year 2025 | Subscription
International Journal of Renewable Energy and its Commercialization
Received Date:
Acceptance Date:
Published On: 2025-08-22
First Page:
Last Page:

Journal Menu


By: Akshay Sanyal

1. Akshay Sanyal,Research Scholar, Department of Architecture, Gautam Buddha University, Greater Noida, Uttar Pradesh
2. Nirmita Mehrotra, Head, Department of Architecture and Planning, Gautam Buddha University, Greater Noida, Uttar Pradesh, India.

Abstract

Loading

Citation:

How to cite this article: Akshay Sanyal, Overview of Integrating Renewable Energy Systems inBuilding Design for Energy-Efficiency. International Journal of Renewable Energy and its Commercialization. 2025; 11(2): -p.

How to cite this URL: Akshay Sanyal, Overview of Integrating Renewable Energy Systems inBuilding Design for Energy-Efficiency. International Journal of Renewable Energy and its Commercialization. 2025; 11(2): -p. Available from:https://journalspub.com/publication/ijrec/article=20121

Refrences:

  1. Almusaed A, Yitmen I, Myhren JA, Almssad A. Assessing the impact of recycled building materials on environmental sustainability and energy efficiency: A comprehensive framework for reducing greenhouse gas emissions. Buildings. 2024;14(6):1566.
  2. Aaditya G, Pillai R, Mani M. An insight into real-time performance assessment of a building integrated photovoltaic (BIPV) installation in Bangalore (India). Energy Sustain Dev. 2013;17(5):431–7.
  3. Pelling M, Patwardhan A, Hallegatte S, Maskrey A, Oki T, Oswald Spring U, et al. Toward a sustainable and resilient future. In: IPCC. Managing the risks of extreme events and disasters to advance climate change adaptation. Cambridge: Cambridge University Press; 2012. p. 437–86.
  4. Ouerghi FH, Omri M, Nisar KS, Abd El-Aziz RM, Taloba AI. Investigating the potential of geothermal energy as a sustainable replacement for fossil fuels in commercial buildings. Alex Eng J. 2024;97:215–29.
  5. Omer AM. Energy, environment and sustainable development. Renew Sustain Energy Rev. 2008;12(9):2265–300.
  6. Schoen TJ. Building-integrated PV installations in the Netherlands: Examples and operational experiences. Sol Energy. 2001;70(6):467–77.
  7. Saidur R, Rahim NA, Islam MR, Solangi KH. Environmental impact of wind energy. Renew Sustain Energy Rev. 2011;15(5):2423–30.
  8. Lund H. Renewable energy systems: A smart energy systems approach to the choice and modeling of 100% renewable solutions. 2nd ed. Cambridge: Academic Press; 2014.
  9. Short W, Sullivan P, Mai T, Mowers M, Uriarte C, Blair N, et al. Regional energy deployment system (ReEDS). Golden (CO): National Renewable Energy Lab (NREL); 2011. Report No.: NREL/TP-6A20-46534.
  10. Panwar NL, Kaushik SC, Kothari S. Role of renewable energy sources in environmental protection: A review. Renew Sustain Energy Rev. 2011;15(3):1513–24.
  11. Fedorova A, Hrynyszyn BD, Jelle BP. Building-integrated photovoltaics from products to system integration – a critical review. IOP Conf Ser Mater Sci Eng. 2020;960(4):042054.
  12. Ahmed N, Khan AN, Ahmed N, Aslam A, Imran K, Sajid MB, et al. Techno-economic potential assessment of mega scale grid-connected PV power plant in five climate zones of Pakistan. Energy Convers Manag. 2021;237:114097.
  13. Aslam A, Ahmed N, Qureshi SA, Assadi M, Ahmed N. Advances in solar PV systems; a comprehensive review of PV performance, influencing factors, and mitigation techniques. Energies. 2022;15(20):7595.
  14. Hoffman AJ. Carbon strategies: How leading companies are reducing their climate change footprint. Ann Arbor: University of Michigan Press; 2007.
  15. Buker MS, Riffat SB. Building integrated solar thermal collectors–A review. Renew Sustain Energy Rev. 2015;51:327–46.
  16. Kalogirou SA. Solar thermal collectors and applications. Prog Energy Combust Sci. 2004;30(3):231–95.
  17. Chaudhry HN, Hughes BR, Ghani SA. A review of heat pipe systems for heat recovery and renewable energy applications. Renew Sustain Energy Rev. 2012;16(4):2249–59.
  18. How a photovoltaic system works: Florida solar energy. J Sol Energy Solut Pap. 2007;92:1–4.
  19. Alam F, Jin Y. The utilisation of small wind turbines in built-up areas: Prospects and challenges. Wind. 2023;3(4):418–38.
  20. Nejat P, Ferwati MS, Calautit J, Ghahramani A, Sheikhshahrokhdehkordi M. Passive cooling and natural ventilation by the windcatcher (Badgir): An experimental and simulation study of indoor air quality, thermal comfort and passive cooling power. J Build Eng. 2021;41:102436.
  21. Afrouzi H, Wimalaratna Y, Ahmed J, Mehranzamir K, Liew SC, Wooi CL, et al. A comprehensive review on available/existing renewable energy systems in Malaysia and comparison of their capability of electricity generation in Malaysia. In: IntechOpen; 2022. doi:10.5772/intechopen.96586.
  22. Bhatia A. Heat pumps for heating and cooling. New York: Continuing Education and Development, Inc.; 2012.
  23. Kharrich M, Kamel S, Alghamdi AS, Eid A, Mosaad MI, Akherraz M, et al. Optimal design of an isolated hybrid microgrid for enhanced deployment of renewable energy sources in Saudi Arabia. Sustainability. 2021;13:4708.
  24. Reddy VJ, Hariram NP, Ghazali MF, Kumarasamy S. Pathway to sustainability: An overview of renewable energy integration in building systems. Sustainability. 2024;16(2):638.
  25. Luo L, Lu L, Shen X, Chen J, Pan Y, Wang Y, et al. Energy, exergy and economic analysis of an integrated ground source heat pump and anaerobic digestion system for co-generation of heating, cooling and biogas. Energy. 2023;282:128220.
  26. Liu Z, Gao X, Li Z, Yang X, Hu Y. Evaluation of biogas and solar energy coupling on phase-change energy-storage heating systems: Optimization of supply and demand coordination. Buildings. 2023;13:2712.
  27. Temiz M, Dincer I. Design and assessment of a solar energy based integrated system with hydrogen production and storage for sustainable buildings. Int J Hydrogen Energy. 2023;48:15817–30.
  28. Khalil M, Dincer I. Development and assessment of integrated hydrogen and renewable energy systems for a sustainable city. Sustain Cities Soc. 2023;98:104794.
  29. Zhang Q, Banihabib R, Fadnes FS, Sazon TAS, Ahmed N, Assadi M. Techno-economic analysis of a biogas-fueled micro gas turbine cogeneration system with seasonal thermal energy storage. Energy Convers Manag. 2023;292:117407.
  30. Mendecka B, Chiappini D, Tribioli L, Cozzolino R. A biogas-solar based hybrid off-grid power plant with multiple storages for United States commercial buildings. Renew Energy. 2021;179:705–22.
  31. Lewis JO. The application of renewable energy technologies in buildings. Int J Sol Energy. 1994;15(1–4):27–36.
  32. Short W, Packey D, Holt T. A manual for the economic evaluation of energy efficiency and renewable energy technologies. Golden (CO): National Renewable Energy Laboratory; 1995. Report No.: NREL/TP-462-5173.
  33. International Energy Agency (IEA). Renewables 2022: Analysis and forecast to 2027. Paris: IEA; 2022.
  34. Renewables 2022 Global Status Report. Paris: REN21 Secretariat; 2022.
  35. Fereidoni S, Nabisi M, Fereidooni L, Javidmehr M, Zirak N, Kasaeian A. An assessment of the impact of building envelope design on the tradeoff between embodied and operating energy. Energy Build. 2023;298:113542.
  36. Barrutieta X, Gainza J, Irulegi O, Hernández R. The zero building: An exemplary nearly zero energy office building (NZEB) and its potential to become a positive energy building (PEB). Arch Sci Rev. 2023;66:214–25.
  37. Santos-Herrero J, Lopez-Guede J, Flores-Abascal I. Modeling, simulation and control tools for nZEB: A state-of-the-art review. Renew Sustain Energy Rev. 2021;142:110851.
  38. Dumitraşcu AI, Corduban CG, Hapurne TM, Bliuc I. NZEB design principles for affordable single-family housing accounting for regional climatic conditions. IOP Conf Ser Mater Sci Eng. 2020;Bristol, UK.
  39. Chiesa G, Acquaviva A, Grosso M, Bottaccioli L, Floridia M, Pristeri E, et al. Parametric optimization of window-to-wall ratio for passive buildings adopting a scripting methodology to dynamic-energy simulation. Sustainability. 2019;11:3078.
  40. Abdelhady S. Techno-economic study and the optimal hybrid renewable energy system design for a hotel building with net zero energy and net zero carbon emissions. Energy Convers Manag. 2023;289:117195.