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Sustainable Environment
An international journal of environmental health and sustainability
Volume 9, 2023 - Issue 1
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Environmental Management & Conservation

Energy performance of water strip modules for industrial heating in real operation conditions: Steady-state and CFD analyses

, & | (Reviewing editor:)
Article: 2236844 | Received 23 Jan 2023, Accepted 11 Jul 2023, Published online: 25 Jul 2023

References

  • Abdul-Jabbar, N. K. (2001). Natural convective heat transfer coefficient – a review. Energy Conversion and Management, 42(4), 505–14. https://doi.org/10.1016/S0196-8904(00)00043-1
  • ANSYS FLUENT 12.0/12.1 Documentation, https://www.afs.enea.it/project/neptunius/docs/fluent/html/ug//node1484.htm (Retrieved September 16, 2022).
  • ASHRAE HANDBOOK HVAC Systems and Equipment, 6.3, Equation (10), 2020.
  • Awbi, H. B., & Hatton, A. (1999). Natural convection from heated room surfaces. Energy and Buildings, 30(3), 233–244. https://doi.org/10.1016/S0378-7788(99)00004-3
  • Awbi, H. B., & Hatton, A. (2000). Mixed convection from heated room surfaces. Energy and Buildings, 32(2), 153–166. https://doi.org/10.1016/S0098-8472(99)00063-5
  • Bonacina, C., Cavallini, A., & Mattarolo, L. (1992). Trasmissione del calore. Cleup, 279. 8871789202.
  • Brunello, P., Cavallini, A., & Zecchin, R. (1993). Moduli stagni a gas con tubi radianti. SGE, 23.
  • Caputo, A. C., & Pelagagge, P. M. (2009). Upgrading mixed ventilation systems in industrial conditioning. Applied Thermal Engineering, 29(14–15), 3204–3211. https://doi.org/10.1016/j.applthermaleng.2009.04.025
  • Chinese, D., Nardin, G., & Saro, O. (2011). Multi-criteria analysis for the selection of space heating systems in an industrial building. Energy, 36(1), 556–565. https://doi.org/10.1016/j.energy.2010.10.005
  • European Committee for Standardization. EN 14037-2:. 2016, Free hanging heating and cooling surfaces for water with a temperature below 120 °C. Part 2: Pre-fabricated ceiling mounted radiant panels for space heating — Test method for thermal output (Retrieved December 15, 2022)
  • HLK test center (IGTE, University of Stuttgart), 2020, Test Report n. DC520 D12.5273, n. DC520 D12.5274.
  • Italian Government. DPR 26 Agosto 1993, n. 412, Regolamento Recante Norme per la Progettazione, L’installazione, L’esercizio e la Manutenzione Degli Impianti Termici Degli Edifici ai Fini del Contenimento dei Consumi di Energia, in Attuazione Dell’art. 4, Comma 4, Della Legge 9 Gennaio 1991, n. 10, Available online: (Retrieved October 18, 2022) https://www.gazzettaufficiale.it/eli/id/1993/10/14/093G0451/sg
  • Jeong, J. W., & Mumma, S. A. (2003). Ceiling radiant cooling panel capacity enhanced by mixed convection in mechanically ventilated spaces. Applied Thermal Engineering, 23(18), 2293–2306. https://doi.org/10.1016/S1359-4311(03)00211-4
  • Katunska, J., Oberleova, J., Rusnak, A., & Toth, S. (2014). Diagnosis of elected industrial hall object and idea for its reconstruction. Advanced Materials Research, 1057, 19–26. https://doi.org/10.4028/www.scientific.net/AMR.1057.19
  • Launder, B. E., & Spalding, D. B. (1972). Lectures in Mathematical Models of Turbulence. Academic Press.
  • Lazzarin, R. (2002). Intervista sul riscaldamento degli ambienti nell’industria (2nd ed.) SGE Editoriali Padova. 8886281757.
  • Lazzarin, R., & Crose, D. (2000). Il soffitto radiante nella climatizzazione ambientale (1st ed.). SGE Padova. 8886281498.
  • Lazzarin, R., & Noro, M. (2020). Energy analysis based on dynamic simulation of industrial heating by radiant modules with condensing unit. AiCarr Journal, 62(3), 25–29.
  • Min, T. C., Schutrum, L. F., Parmelee, G. V., & Vouris, J. D. (1956). Natural convection and radiation in a panel heated room. ASHRAE Transactions, 62, 337–358.
  • Noro, M., Mancin, S., & Cerboni, F. (2022a). High efficiency hybrid radiant and heat pump heating plants for industrial buildings: An energy analysis. International Journal of Heat and Technology, 40(4), 863–870. https://doi.org/10.18280/ijht.400401
  • Noro, M., Mancin, S., & Cerboni, F. (2022b). Improving efficiency and renewables utilization by hybrid heating plants for industrial buildings. 2022 IOP Conf. IOP Conference Series: Earth and Environmental Science, 1106(1), 012013. https://doi.org/10.1088/1755-1315/1106/1/012013
  • Novoselac, A., Burley, B. J., & Srebric, J. (2006). New convection, correlations for cooled ceiling panels in room with mixed and stratified airflow (Vol. 122). HVAC&R Research. https://doi.org/10.1080/10789669.2006.10391179
  • Officine Termotecniche Fraccaro. Waterstrip (Termostrisce radianti), agg. 04/2017
  • Richter, B. K., Marcondes, G. H., Monteiro, N. J., da Costa, S. E. G., Loures, E. R., Deschamps, F., & de Lima, E. P. (2023). Industrial energy efficiency assessment and prioritization model: An approach based on multi-criteria method PROMETHEE. International Journal of Sustainable Energy Planning and Management, 37, 41–60. https://doi.org/10.54337/ijsepm.7335
  • Schutrum, L. F., & Vouris, J. D. (1954). Effects of room size and non-uniformity of panel temperature on panel performance. ASHRAE Transactions, 60, 1516.
  • Shook, P., Choi, J.-K., & Kissock, K. (2023). Analyzing the multiscale impacts of implementing energy-efficient HVAC improvements through energy audits and economic input-output analysis. Journal of Energy Resources Technology, Transactions of the ASME, 145(4), 041701. https://doi.org/10.1115/1.4056116
  • Spiga, M. (2018). Efficienza energetica e termofisica dell’edificio (1st ed.). Società Editrice Esculapio - Bologna. 9788893850759.
  • Trianni, A., Cagno, E., & De Donatis, A. (2014). A framework to characterize energy efficiency measures. Applied Energy, 118, 207–220. https://doi.org/10.1016/j.apenergy.2013.12.042
  • Vogt, M., Buchholz, C., Thiede, S., & Herrmann, C. (2022). Energy efficiency of Heating, Ventilation and Air Conditioning systems in production environments through model-predictive control schemes: The case of battery production. Journal of Cleaner Production, 350, 131354. https://doi.org/10.1016/j.jclepro.2022.131354