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Sicherheit und Katastrophenschutz für Museen, Archive

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5. Literatur<br />

1 Fire Risk Evaluation To European Cultural Heritage, Decision Supporting Procedure, Users Guide, Fifth<br />

Framework Programme, P. Vandevelde (Hg.), Gent 2005, s.a. downloads unter: http://www.firetech.be<br />

2 Dobbernack, R.; Klingenberg, M.: Fire Risk Assessment Methods, WG 6 in Fire Risk Evaluation To<br />

European Cultural Heritage, Fifth Framework Programme, Gent 2005, s.[1]<br />

3 Nelson, H. E.; Shibe, A. J.: A System for Fire Safety Evaluation of Health Care Facilities, NBSIR 78-1555,<br />

NIST, Washington DC, 1980.<br />

4 Watts, J. M.: The Sfpe Handbook, Fire Protection Engineering, section five, chapter 10,<br />

3rd edition, 2002.<br />

5 XPS Fire, manual Version 3.0, Munich Re, 9/96.<br />

6 Budnick, E. K.; Mckenna, L. A. Jr., Watts, J. M. Jr.: Quantifying Fire Risk for Telecommunications<br />

Network Integrity, in Fire Safety Science – Proceedings of the Fifth International Symposium,<br />

International Association for Fire Safety Science, pp. 691 – 700, 1997.<br />

7 Fontana, M.: SIA 81 – A Swiss Risk Assessment Method, VTT Symposium 179, pp 59-69, Institute of<br />

Structural Engineering, ETH Zürich.<br />

8 De Smet, F.R.A.M.E: Fire Risk Assessment Method for Engineering;<br />

http://users.belgacombusiness.net/cd046514/webengels.html<br />

9 Larsson, D.: Developing the Structure of a Fire Risk Index Method for Timber-frame Multi-storey<br />

Apartment Buildings, Report 5062, Dept. of Fire Safety Engineering, L<strong>und</strong> University, 2000.<br />

10 Hultquist, H., Karlsson, B.: Evaluation of a Fire Risk Index Method for Multi Storey Apartment<br />

Buildings, Department of Fire Safety Engineering, L<strong>und</strong> University, Sweden, Report 3088, L<strong>und</strong>, 2000.<br />

11 Karlsson, B.: Fire Risk Index Method-Multi Storey Apartment Buildings, FRIM-MAB, Version 1.2,<br />

Trätek Report I 0009025, Sweden, 2000.<br />

12 Watts, J. M. Jr.: Fire Risk Ranking, Section 5, Chapter 2, SFPE Handbook of Fire Protection Engineering,<br />

2nd Edition, USA, 1995.<br />

13 ISO/TC92/SC4/WG10 N24 Rev: Draft Material submitted describing Fire Risk Assessment Methods,<br />

2001.<br />

14 Meacham, B. J.: The SFPE Handbook, Fire Protection Engineering, section five, chapter 12,<br />

3rd edition, 2002.<br />

15 ISO/TC/SC4/WG10 N34 Rev1: Fire Safety Engineering, WG10: Fire Risk Assessment; Draft document on<br />

fire risk Assessment guidance, 09/2001.<br />

16 Rantantalo, T.; Nystedt, F.: Use of Fire Safety Engineering and Risk Analysis in Cultural Heritage<br />

Buildings, Fire Risk Evaluation To European Cultural Heritage (FIRE TECH), European study into the Fire<br />

Risk to European Cultural Heritage, WG6, Fire Risk Assessment Methods, Example of Application<br />

(Appendix 4), 2005.<br />

17 Magnusson, S. E.; Frantzich, H.; Harada, K.: Fire Safety Design Based on Calculations, Uncertainty<br />

Analysis and Safety Verification, Department of Fire Safety Engineering, L<strong>und</strong> University, Report 3078,<br />

Sweden, 1995.<br />

18 Hosser, D.; Sprey, W.: A Probabilistic Method for Optimisation of Fire Safety in Nuclear Power Plants,<br />

First International Symposium on Fire Safety Science, Gaithersburg, Maryland, USA, 1985.<br />

19 Curtat, M.; Vandevelde, P.; De Neayer, A.; Streuwe, E. ; Twilt, L. ; Breunese, A.; Neves, C.; Valente, J.; Ventura,<br />

J.: Fire Risk Define, apply and document a quantitative method to help decision making, WG 7 in Fire<br />

Risk Evaluation To European Cultural Heritage, Fifth Framework Programme, 2005.<br />

20 Leitfaden Ingenieurmethoden des Brandschutzes, Herausgeber D. Hosser, vfdb, Technischer Fachbericht<br />

TB04/01, Mai 2006.<br />

21 vfdb, 8. Internationales Brandschutz-Seminar, Band 1, Karlsruhe, 25. - 28. Oktober 1990.<br />

60 61

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