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2018 | OriginalPaper | Buchkapitel

12. Processing Switzerland

verfasst von : Adrian V. Gheorghe, Dan V. Vamanu, Polinpapilinho F. Katina, Roland Pulfer

Erschienen in: Critical Infrastructures, Key Resources, Key Assets

Verlag: Springer International Publishing

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Abstract

This chapter explores an application of QVA model. It presents a model and computer-run reports at the national level using Switzerland as an example. The reader might find it necessary to refer to Chaps. 2 and 3 and Appendix C for explanatory notes.

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Fußnoten
1
It should be noted that the concept of resilience has numerous applications, ranging from large social systems to small-scale systems. For those interested in quantification and evaluation resilience in buildings, Tokgoz’s (2012) research provides a ‘dashboard’ for resilience acceptability related to desired resilience of buildings corresponding to hurricane categories; complete to numerical estimations and models based on HAZUS–MH: Hazards U.S. Multi-Hazard.
 
Literatur
Zurück zum Zitat Gheorghe, A. V. (2004). The hidden faults: Towards a standing method to assess Switzerland’s vulnerabilities. Zurich, Switzerland: Laboratory of Safety Analysis, ETH Zurich. Gheorghe, A. V. (2004). The hidden faults: Towards a standing method to assess Switzerland’s vulnerabilities. Zurich, Switzerland: Laboratory of Safety Analysis, ETH Zurich.
Zurück zum Zitat Gheorghe, A. V., & Vamanu, D. V. (2004). Complexity induced vulnerability. International Journal of Critical Infrastructures, 1(1), 76–84.CrossRef Gheorghe, A. V., & Vamanu, D. V. (2004). Complexity induced vulnerability. International Journal of Critical Infrastructures, 1(1), 76–84.CrossRef
Zurück zum Zitat Nilsson, J., Magnusson, S., Hallin, P., & Lenntorp, B. (2001). Models for vulnerability auditing and distribution of governmental economical means at the local authority level. Lund, Sweden: LUCRAM: Lund University Centre for Risk Analysis and Management. Nilsson, J., Magnusson, S., Hallin, P., & Lenntorp, B. (2001). Models for vulnerability auditing and distribution of governmental economical means at the local authority level. Lund, Sweden: LUCRAM: Lund University Centre for Risk Analysis and Management.
Zurück zum Zitat Tokgoz, B. E. (2012). Probabilistic resilience quantification and visualization building performance to hurricane wind speeds (Ph.D.). Old Dominion University, United States—Virginia. Tokgoz, B. E. (2012). Probabilistic resilience quantification and visualization building performance to hurricane wind speeds (Ph.D.). Old Dominion University, United States—Virginia.
Zurück zum Zitat van den Brand, D. (1996). Manual for the classification and prioritization of risks due to major accidents in process and related industries (No. IAEA-TECDOC-727 (Rev. 1)). Vienna: International Atomic Energy Agency. van den Brand, D. (1996). Manual for the classification and prioritization of risks due to major accidents in process and related industries (No. IAEA-TECDOC-727 (Rev. 1)). Vienna: International Atomic Energy Agency.
Zurück zum Zitat Vamanu, B. I., Gheorghe, A. V., & Katina, P. F. (2016). Critical infrastructures: Risk and vulnerability assessment in transportation of dangerous goods—Transportation by road and rail (Vol. 31). Cham, Switzerland: Springer International Publishing.CrossRef Vamanu, B. I., Gheorghe, A. V., & Katina, P. F. (2016). Critical infrastructures: Risk and vulnerability assessment in transportation of dangerous goods—Transportation by road and rail (Vol. 31). Cham, Switzerland: Springer International Publishing.CrossRef
Metadaten
Titel
Processing Switzerland
verfasst von
Adrian V. Gheorghe
Dan V. Vamanu
Polinpapilinho F. Katina
Roland Pulfer
Copyright-Jahr
2018
DOI
https://doi.org/10.1007/978-3-319-69224-1_12