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The Importance of Investing in the Energy Refurbishment of Hospitals: Results of a Case Study in a Mediterranean Climate

Author

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  • Rosa Francesca De Masi

    (Department of Engineering (DING), University of Sannio, Piazza Roma, 21, 82100 Benevento, Italy)

  • Nicoletta Del Regno

    (Department of Medicine and Health Sciences—Vincenzo Tiberio, University of Molise, Via G. Paolo II Contrada “Tappino”, 86100 Campobasso, Italy)

  • Antonio Gigante

    (Department of Engineering (DING), University of Sannio, Piazza Roma, 21, 82100 Benevento, Italy)

  • Silvia Ruggiero

    (Department of Engineering (DING), University of Sannio, Piazza Roma, 21, 82100 Benevento, Italy)

  • Alessandro Russo

    (Department of Engineering (DING), University of Sannio, Piazza Roma, 21, 82100 Benevento, Italy)

  • Francesco Tariello

    (Department of Agricultural, Environmental and Food Sciences, Via F. De Sanctis, 86100 Campobasso, Italy)

  • Giuseppe Peter Vanoli

    (Department of Medicine and Health Sciences—Vincenzo Tiberio, University of Molise, Via G. Paolo II Contrada “Tappino”, 86100 Campobasso, Italy)

Abstract

Because of the social importance of hospitals, characterized by energy-intensive users, large-scale refurbishment projects for these types of buildings are required. With the aim of helping researchers and designers, this paper proposes a multistage methodological approach for the optimization of retrofit designs based on energy, environmental, and economic indicators. Some guidelines are also highlighted thanks to the results obtained from a case study of a private hospital in Naples (Southern Italy, Mediterranean climate) located in a constrained landscape area. The first step consists of the calibration of a simulation energy model defined via in situ investigations, direct surveys and monitoring of energy loads and indoor quality. Then, the model is used to verify the effectiveness of several efficiency measures regarding the building envelope, the active energy systems, and the energy conversion from renewables in order to minimize the energy demand with acceptable economic profitability. This case study demonstrates that electricity demand can be reduced by up to 48% with an investment of around EUR 720,030.00; the payback time without national incentives is 10 years, but it can be halved with appropriate financial support.

Suggested Citation

  • Rosa Francesca De Masi & Nicoletta Del Regno & Antonio Gigante & Silvia Ruggiero & Alessandro Russo & Francesco Tariello & Giuseppe Peter Vanoli, 2023. "The Importance of Investing in the Energy Refurbishment of Hospitals: Results of a Case Study in a Mediterranean Climate," Sustainability, MDPI, vol. 15(14), pages 1-20, July.
  • Handle: RePEc:gam:jsusta:v:15:y:2023:i:14:p:11450-:d:1201239
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    References listed on IDEAS

    as
    1. Wang, Tao & Li, Xiaodong & Liao, Pin-Chao & Fang, Dongping, 2016. "Building energy efficiency for public hospitals and healthcare facilities in China: Barriers and drivers," Energy, Elsevier, vol. 103(C), pages 588-597.
    2. Zhuang, Dian & Gan, Vincent J.L. & Duygu Tekler, Zeynep & Chong, Adrian & Tian, Shuai & Shi, Xing, 2023. "Data-driven predictive control for smart HVAC system in IoT-integrated buildings with time-series forecasting and reinforcement learning," Applied Energy, Elsevier, vol. 338(C).
    3. Zini, Marco & Carcasci, Carlo, 2023. "Machine learning-based monitoring method for the electricity consumption of a healthcare facility in Italy," Energy, Elsevier, vol. 262(PB).
    4. Dong Kon Hwang & Jinkyun Cho & Junghwan Moon, 2019. "Feasibility Study on Energy Audit and Data Driven Analysis Procedure for Building Energy Efficiency: Bench-Marking in Korean Hospital Buildings," Energies, MDPI, vol. 12(15), pages 1-18, August.
    5. Hyeongjin Moon & Jae-Young Jeon & Yujin Nam, 2020. "Development of Optimal Design Method for Ground-Source Heat-Pump System Using Particle Swarm Optimization," Energies, MDPI, vol. 13(18), pages 1-17, September.
    6. Kantola, Mikko & Saari, Arto, 2013. "Renewable vs. traditional energy management solutions – A Finnish hospital facility case," Renewable Energy, Elsevier, vol. 57(C), pages 539-545.
    7. Bujak, Janusz Wojciech, 2015. "Production of waste energy and heat in hospital facilities," Energy, Elsevier, vol. 91(C), pages 350-362.
    8. Buonomano, Annamaria & Calise, Francesco & Ferruzzi, Gabriele & Palombo, Adolfo, 2014. "Dynamic energy performance analysis: Case study for energy efficiency retrofits of hospital buildings," Energy, Elsevier, vol. 78(C), pages 555-572.
    9. Setare Peirow & Fatemeh Razi Astaraei & Amirali Saifoddin Asl, 2023. "Techno-Economic and Environmental Assessment of a Hybrid Renewable Energy System for a Hospital Using Multi-Criteria Decision-Making Method," Energies, MDPI, vol. 16(4), pages 1-22, February.
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