Conference Paper
Proceedings of Building Simulation 2023: 18th Conference of IBPSA
Numerical analysis of wind effects on mechanically induced depressurization for asbestos abatement
Numerical analysis of wind effects on mechanically induced depressurization for asbestos abatement
Anjali Krishnan Radhakrishnan Jayakumari 1,2, Alessio Ricci 1,3, Romain Guichard 2, Stefanie Gillmeier 1, Bert Blocken 4,51 Eindhoven University of Technology, The Netherlands2 Institut National de Recherche et de Sécurité, France3 University School For Advanced Studies IUSS Pavia, Italy4 KU Leuven, Belgium5 Anemos BV Company, BelgiumDOI: https://doi.org/10.26868/25222708.2023.1208Abstract: Asbestos abatement from buildings requires establishing depressurization through a mechanical ventilation system to prevent fiber leakage. However, atmospheric wind can cause momentary breaching of containment, increasing the probability of asbestos fiber leaking into the atmosphere. This necessitates the investigation of wind effects on mechanically-induced containment by experimental and numerical techniques. The paper focuses on the reliability of a ventilation network model (SYLVIA) to predict internal pressure field when coupled with external pressure predicted by wind-tunnel (WT) tests or large eddy simulations (LES). The internal pressure and the probability of containment breach predicted by WT-SYLVIA and LES-SYLVIA show reliable results. Keywords: Asbestos abatement, CFD simulations, wind-tunnel testing, ventilation network tool, wind effects.Pages: 1470 - 1475 Paper:![]()
