Remaining Useful Life Estimation for Air Filters at a Nuclear Power Plant

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Published Jul 8, 2014
Olli Saarela John Einar Hulsund Aimo Taipale Morten Hegle

Abstract

The exhaust ventilation air from nuclear power plants and other nuclear facilities is carefully filtered, as aerosols are a potential vector of contamination. Monitoring the condition of the air filters improves radiation safety. In this paper the progression of differential pressures over air filters at a nuclear research reactor have been studied. Technical properties and possible environmental influences have been checked in order to understand the variation of the pressure over time. The differential pressure has been decomposed into different components as a result of an analysis of environmental conditions. The gradually increasing component, representing gradual accumulation of aerosol particles in the filter, is modeled as a gamma process and an estimate for determining the remaining useful life of the air filters has been computed.

How to Cite

Saarela, O., Einar Hulsund, J., Taipale, A., & Hegle, M. (2014). Remaining Useful Life Estimation for Air Filters at a Nuclear Power Plant. PHM Society European Conference, 2(1). https://doi.org/10.36001/phme.2014.v2i1.1493
Abstract 393 | PDF Downloads 161

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Keywords

Remaining useful Life, air filter, nuclear reactor

References
Box, G. E. P., Hunter J. S., & Hunter, W. G. (2005). Statistics for experimenters. Hoboken, NJ, USA: John Wiley & Sons.
Brown, R. C. (1993). Air filtration – An integrated approach to the theory and applications of fibrous filters. Oxford, UK: Pergamon Press.
Burnham, K. P., & Anderson, D. R. (2002). Model selection and multimodel inference. New York, NY, USA: Springer Verlag.
First, M. W. (1996). Aging of HEPA filters in service and in storage. Journal of the American Biological Safety Association, 1 (1).
Gustavsson, J. (ed.), Ginestet, A., Tronville, P., & Hyttinen, M. (2011). Air filtration in HVAC systems. REHVA Guidebook 11. Brussels: REHVA.
Joubert, A., Laborde, J. C., Bouilloix, L., Chazelet, S., & Thomas, D. (2011). Modelling the pressure drop across HEPA filters during cake filtration in the presence of humidity. Chemical Engineering Journal, 166 (2).
Miguel, A. F. (2003). Effect of air humidity on the evolution of permeability and performance of a fibrous filter during loading with hygroscopic and non-hygroscopic particles. Journal of Aerosol Science, 34 (6).
Norwegian Meteorological Institute (2014). Weather data in http://eklima.met.no/ accessed 3.1.2014.
van Noortwijk, J. M. (2003). A stochastic deterioration process for time-dependent reliability analysis. The Eleventh IFIP WG 7.5 Working Conference on Reliability and Optimization of Structural Systems, November 2-5, Banff, Canada.
Saarela, O., Nystad, B. H., Taipale, A., & Ventä, O. (2013). Selection and identification of a shape function for modeling degradation as a gamma process. International Workshop on Structural Health Monitoring, September 10-12, Stanford, CA, USA.
Saxena, A., Celaya, J., Saha, B., Saha, S., & Goebel, K. (2010). Metrics for offline evaluation of prognostic performance. International Journal of Prognostics and Health Management, 1(1).
Storn, R., & Price, K. (1997). Differential evolution - a simple and efficient heuristic for global optimization over continuous spaces. Journal of Global Optimization, 11 (4).
U.S. Department of Energy (DOE) (2003). Nuclear air cleaning handbook. DOE technical standards, DOE-HDBK-1169-2003. Washington: DOE.
U.S. Nuclear Regulatory Commission (NRC) (2011). An approach for using probabilistic risk assessment in risk-informed decisions on plant specific changes to the licensing basis. Regulatory Guide 1.174, Revision 2. Washington: NRC.
Varde, P. V., & Pecht, M. G. (2012). Role of prognostics in support of integrated risk-based engineering in nuclear power plant safety. International Journal of Prognostics and Health Management, 3 (1).
Winegardner, W. K. (1996). Phase I aging assessment of nuclear air-treatment system high efficiency particulate air and adsorbers. Nuclear Engineering and Design, 163 (3).
Section
Technical Papers

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