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Articles

Energy efficiency in hospitals: comparative analysis of different HVAC configurations

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Pages 554-577 | Received 06 Feb 2023, Accepted 26 Sep 2023, Published online: 11 Oct 2023

References

  • Adv Next Air. n.d. Technical datasheet. https://www.rhoss.it/it/prodotti/adv-next-air-01%C3%B716/
  • ASHRAE. (2013). Hvac design manual for hospitals and clinics (2nd Edition).
  • Bakhtiari, H., Akanderaand, J., & Cehlin, M. (2020). Evaluation of thermal comfort in a historic building refurbished to an office building with modernized HVAC systems. Advances in Building Energy Research, 14(2), 218–237. https://doi.org/10.1080/17512549.2019.1604428
  • Bawaneh, K., Nezami, F. G., Rasheduzzaman, M., & Deken, B. (2019). Energy consumption analysis and characterization of healthcare facilities in the United States. Energies, 12(19), 3775. https://doi.org/10.3390/en12193775
  • Ceglia, F., Marrasso, E., Roselli, C., & Sasso, M. (2022). Time-evolution and forecasting of environmental and energy performance of electricity production system at national and at bidding zone level. Energy Conversion and Management, 265, 115772.
  • Chen, X., Chen, Y., Zhang, M., Jiang, S., Gou, H., Pang, Z., & Shen, B. (2021). Hospital-oriented quad-generation (HOQG)-A combined cooling, heating, power and gas (CCHPG) system. Applied Energy, 300, 117382.
  • Commission, Commission Delegated Regulation (EU). (2012). No 244/2012 of 16 January 2012 Supplementing Directive 2010/31/EU of the European Parliament and of the Council on the Energy Performance of Buildings. Off. J. Eur. Union. Available at. https://eur-lex.europa
  • De Masi, R. F., Ascione, F., Sosto, G., & Vanoli, G. P. (2017). Cost-effective energy refurbishment of health care facilities in heating dominated climates of Italian backcountry. The case study of the Hospital Veneziale of Isernia. American Journal of Engineering and Applied Sciences, 10, 756–768. https://doi.org/10.3844/ajeassp.2017.756.768
  • Deshmukh, S., Glicksman, L., & Norford, L. (2020). Case study results: fault detection in air-handling units in buildings. Advances in Building Energy Research, 14(3), 305–321.
  • Design Builder v.4.7. (2016). http://www.designbuilder.co.uk
  • Dimoudi, A., Kantzioura, A., Toumpoulides, P., Zoras, S., Serghides, D., Dimitriou, S., Thravalou, S., Metaj, M., Mara, E., & Dorri, A. (2022). he energy performance of hospital buildings in the south Balkan region: The prospects for zero-energy hospitals. In A. Sayigh (Ed.), Sustainable energy development and innovation. Innovative renewable energy. Springer https://doi.org/10.1007/978-3-030-76221-6_83
  • D.P.R. 14 gennaio. (1997). Approvazione dell’atto di indirizzo e coordinamento alle regioni e alle province autonome di Trento e Bolzano, in materia di requisiti strutturali, tecnologici ed organizzativi minimi per l’esercizio delle attività sanitarie da parte delle strutture pubbliche e private. Gazzetta Ufficiale. 1997. https://www.gazzettaufficiale.it/eli/id/1997/02/20/097A1165/sg
  • Dulce-Chamorro, E., & Martinez-de-Pison, F. J. (2021). An advanced methodology to enhance energy efficiency in a hospital cooling-water system. Journal of Building Engineering, 43, 102839.
  • Enerblu Cogeneration. n.d. Technical Datasheet. http://www.enerblu-cogeneration.com/product_models/307-rec2-140-g.pdf.
  • González González, A., García-Sanz-Calcedo, J., & Rodríguez Salgado, D. (2018). Evaluation of energy consumption in German hospitals: Benchmarking in the public sector. Energies, 11(9), 2279. https://doi.org/10.3390/en11092279
  • González González, A., García-Sanz-Calcedo, J., & Salgado, D. R. (January 2018). A quantitative analysis of final energy consumption in hospitals in Spain. Sustainable Cities and Society, 36, 169–175. https://doi.org/10.1016/j.scs.2017.10.029
  • Guo, S., Wang, W., & Zhou, Y. (2022). Research on energy saving and economy of Old buildings based on parametric design: A case study of a hospital in Linyi City, Shandong province. Sustainability, 14(24), 16681. https://doi.org/10.3390/su142416681
  • Ilmed Impianti. n.d. Technical Datasheet. https://www.ilmedimpianti.com/wp-content/uploads/2021/07/tt-ita.pdf.
  • International Standard. (2015). ISO 14644-1. Cleanrooms and associated controlled environments – Part 1: Classification of air cleanliness by particle concentration. https://zoser.com.co/wp-content/uploads/2015/10/ISO%2014644-1%20Version%202015.pdf
  • Ispesl. (2009). Istituto Superiore per la prevenzione e la sicurezza del lavoro. Linee guida sugli standard di sicurezza e di igiene del lavoro nel reparto operatorio. 2009. https://www.lisaservizi.it/sites/default/files/old_sitefile/20150820174253-ISPESL-LG-SaleOperatorie.pdf
  • Italian Committee for Standardization, Standard UNI 10349 Part 1. (2016). Riscaldamento e raffrescamento degli edifici - Dati climatici - Parte 1: Medie mensili per la valutazione della prestazione termo-energetica dell'edificio e metodi per ripartire l'irradianza solare nella frazione diretta e diffusa e per calcolare l'irradianza solare su di una superficie inclinata (in Italian).
  • Ji, R., & Qu, S. (2019). Investigation and evaluation of energy consumption performance for hospital buildings in China. Sustainability, 11, 1724. doi:10.3390/su11061724
  • Kloben Industries. n.d. Technical Datasheet. http://www.kloben.it/uploads/files/ProductAttachment/850000395_scheda_tecnica_COLLETTORE_ATON_G_22.pdf
  • Mitsubishi Electric. n.d. Technical Datasheet. i-FX-N-G01 0472 - 1152 | MEHITS (melcohit.com)
  • Morawska, L., Tang, J. W., Bahnfleth, W., Bluyssen, P. M., Boerstra, A., Buonanno, G., Cao, J., Dancer, S., Floto, A., Franchimon, F., Haworth, C., Hogeling, J., Isaxon, C., Jimenez, J. L., Kurnitski, J., Li, Y., Loomans, M., Marks, G., Marr, L. C., & Mazzarella, A. K. M. (2020). How can airborne transmission of COVID-19 indoors be minimised? Environment International, 142, 105832. https://doi.org/10.1016/j.envint.2020.105832
  • Nourdine, B., & Saad, A. (2020). Energy Consumption in Hospitals. 4th International Conference on Electrical and Information Technologies ICEIT’2020.04-07 March 2020.
  • Nourdine, B., & Saad, A. (2021). About energy efficiency in Moroccan health care buildings. Materials Today: Proceedings, 39, 1141–1147.
  • Özahi, E., Abuşoğlu, A., Kutlar, Aİ, & Dağcı, O. (2017). ˙A comparative thermodynamic and economic analysis and assessment of a conventional HVAC and a VRF system in a social and cultural center building. Energy and Buildings, 140, 196–209. https://doi.org/10.1016/j.enbuild.2017.02.008
  • Papadopoulos, A. M. (2016). Energy efficiency in hospitals: Historical development, trends and perspectives. In S. N. Boemi, O. Irulegi, & M. Santamouris (Eds.), Energy performance of buildings. Springer. https://doi.org/10.1007/978-3-319-20831-2_11
  • Prada, M., Prada, I. F., Cristea, M., Popescu, D. E., Bungau, C., Aleya, L., & Bungau, C. C. (2020). New solutions to reduce greenhouse gas emissions through energy efficiency of buildings of special importance – Hospitals. Science of the Total Environment, 18, 137446.
  • Psillaki, M., Apostolopoulos, N., Makris, I., Liargovas, P., Apostolopoulos, S., Dimitrakopoulos, P., & Sklias, G. (2023). Hospitals’ energy efficiency in the perspective of saving resources and providing quality services through technological options. A systematic literature review. Energies, 16(2), 755. https://doi.org/10.3390/en16020755
  • Rahman, N., Lim, C. H., & Fazlizan, A. (2021). Optimizing the energy saving potential of public hospital through a systematic approach for green building certification in Malaysia. Journal of Building Engineering, 43, 103088.
  • Rahman, N. M. A., Haw, L. C., & Fazlizan, A. (2021). A literature review of naturally ventilated public hospital wards in tropical climate countries for thermal comfort and energy saving improvements. Energies, 14(2), 435. https://doi.org/10.3390/en14020435
  • Sdino, L., Brambilla, A., Dell’Ovo, M., Sdino, B., & Capolongo, S. (2021 Jul). Hospital construction cost affecting their lifecycle: An Italian overview. Healthcare, 9, 888. Published online 2021 Jul 14. https://doi.org/10.3390/healthcare9070888
  • Song, I., Lhee, J., & Jeong, J. (2021). Energy efficiency and economic analysis of variable frequency drive and variable pitch system: A case study of axial fan in hospital. Journal of Building Engineering, 43, 103213.
  • SunPower. n.d. Technical Datasheet. https://sunpower.maxeon.com/it/prodotti-pannelli-fotovoltaici/pannelli-fotovoltaici
  • Teke, A., & Timur, O. (2014). Assessing the energy efficiency improvement potentials of HVAC system considering economic and environmental aspects at the hospitals. Renewable and Sustainable Energy Reviews, 33, 224–235.
  • Uni 10339. (2008). Impianti aeraulici per la climatizzazione – classificazione, precisazioni e requisiti prestazionali per la progettazione e la fornitura. http://www.ctslab.eu/doc/Revisione_UNI_10339_del_081017.pdf
  • United Nations General Assembly. n.d. Resolution adopted by the general assembly on 25 September 2015, transforming our world: The 2030 agenda for sustainable development; united nations general assembly: New York, NY, USA, 2015
  • U.S. Department of Energy. n.d. Energy Plus simulation software, Version 8.1.0
  • U.S. Department of Energy Federal Energy Management Program. (November 2015). M&V Guidelines: Measurement and Verification for Performance-Based Contracts Version 4.0
  • Yazaki, M. n.d. Technical Datasheet. https://maya-airconditioning.com/pdf/WFC%20Series%20LD_001_IT.pdf

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