Assessing Vulnerability and Managing Earthquake Risk at Urban Scale
URBSIS project
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      • task 1 - building stock characterisation, inspection and survey
      • task 2 - database and geographical information system (GIS) platform development
      • task 3 - vulnerability assessment and risk evaluation methodologies
      • task 4 - mechanical methods for the vulnerability assessment and uncertainty analysis
      • task 5 - development of vulnerability curves for old masonry buildings
      • task 6 - post-earthquake assessment management
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    • romeu vicente
    • aníbal costa
    • carlos s. oliveira
    • humberto varum
    • joão estêvão
    • alexandre a. costa
    • tiago ferreira
    • rui maio
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bibliographical references
  1. Portugal; Resolução da Assembleia da República n.º 102/2010: Adopção de medidas para reduzir os riscos sísmicos. Diário da República, 1.ª série — N.º 155 — 11 de Agosto de 2010. (2010)
  2. CEN; Eurocode 8: Design of structures for earthquake resistance - Part 1: General rules, seismic actions and rules for buildings. European Committee for Standardisation, Brussels. (2004)
  3. Vicente, R.; Estratégias e metodologias para intervenções de reabilitação urbana. Avaliação da vulnerabilidade e do risco sísmico do edificado da Baixa de Coimbra. Tese de doutoramento, Universidade de Aveiro. (2007)
  4. Vicente, R.; Parodi, S.; Lagomarsino, S.; Varum, H.; Mendes Silva, J.A.R.: Seismic vulnerability and risk assessment: case study of the historic city centre of Coimbra, Portugal. Bull Earthquake Eng. DOI: 10.1007/s10518-010-9233-3 (2010)
  5. Oliveira, C.S.; Roca, A.; Goula, X.: Assessing and Managing Earthquake Risk. Geo-scientific and Engineering Knowledge for Earthquake Risk Mitigation: developments, tools, techniques. Chapter 1 - "Assessing and Managing Earthquake Risk"    (C.S. Oliveira, A. Roca and X. Roca, editors), Springer. pp.1-14 (2006)
  6. Corsanego, A. and Petrini, V.; Seismic vulnerability of buildings. Proceedings of the SEISMED 3, Trieste, Italy. (1990)
  7. Heyman, J.; The stone skeleton. Int. J. Solids and Structures, 2:2:249-279. (1966)
  8. Sinha, B.; A simplified ultimate load analysis of laterally loaded model orthotropic brickworks panels of low tensile strength. Struct Eng 56:4:81-4. (1978)
  9. Spence, R.; Coburn, A.; Strengthening buildings of stone masonry to resist earthquakes. Meccanica 27:213-221. Kluwer Academic Publisher. (1992)
  10. Giuffre', A.; Carocci, A.; De Felice, G.; Tocci, C.; Actuality and modelling of historical masonry. Proceedings of the US Italy Workshop on Guidelines for Seismic Evaluation and Rehabilitation of Un-reinforced Masonry Buildings, Pavia, Italy, 22-24 June. Chapter I, 17-29. (1994)
  11. Calvi, G.M.; A displacement-based approach for vulnerability evaluation of classes of buildings. Journal of Earthquake Engineering, Vol.3, No.3, pp.411-438. (1999)
  12. D'Ayala, D.; Spence, R.; Vulnerability of buildings in historic town centres. Proceedings of the 7th National Conference "L'ingegneria Sismica in Italia", Siena, Italy. 363-372. (1995)
  13. D'Ayala, D.; Spence, R.; Oliveira, C.S.; TOSQA Project, Earthquake protection for the historic town centres: the case of the Alfama, Lisbon, September. (1996)
  14. D'Ayala, D.; Spence, R.; Oliveira, C.S.; Pomonis, A.; Earthquake loss estimation for Europe's historic town centres. Earthquake Spectra, November. (1997)
  15. Spence, R.; D'Ayala, D.; Martin, B.; The Umbria-Marche earthquake of September 1997. Institution of Structural Engineers, London, EEFIT report. (1998)
  16. D'Ayala, D.; Spence, R.; Earthquake damage and vulnerability assessment for historic masonry structures. Proceedings of the SISM-98. Workshop on reducing earthquake risk to structures and monuments in the European Union, Cambridge, 26-27 November. (1998)
  17. GNDT-SSN; Scheda di esposizione e vulnerabilità e di rilevamento danni di primo livello e secondo livello (muratura e cemento armato). Gruppo Nazionale per la Difesa dai Terremoti, Roma. (2004)
  18. Lagomarsino, S.; Giovinazzi, S.; Macroseismic and mechanical models for the vulnerability assessment of current buildings. Bull Earthquake Eng., 4(4), 415-443, DOI: 10.1007/s10518-006-9024-z. (2006)
  19. Grünthal, G.; European Macroseismic Scale. Centre Européen de Géodynamique et de Séismologie, Luxembourg. Vol.15. (1998)
  20. RISK-UE Project; An advanced approach to earthquake risk scenarios with applications to different European cities. (2008)
  21. Vicente, R.; Parodi, S.; Lagomarsino, S.; Varum, H.; Mendes da Silva, J.A.R.; Seismic vulnerability assessment, damage scenarios and loss estimation. Case study of the old city centre of Coimbra, Portugal. Paper ID: 09-01-0123, Session 9, Earthquake Risk Reduction for Urban and Rural Areas: Urban Areas. 14th World Conference on Earthquake Engineering, October 12-17, 2008, Beijing, China. (2008)
  22. LESSLOSS; European Research Project for Risk Mitigation for Earthquakes and Landslides (2004-2007). (2008)
  23. UNESCO; United Nations Educational Scientific and Cultural Organizations. World Heritage Council. (2008)
  24. ArcGis 9.2; Geographic Information Systems, 310 New York Street, Redlands, 92373-8100, USA, ESRI®. (2005)
  25. Ferreira, T.; Vicente, R.; Varum, H.; Seismic vulnerability assessment of masonry facade walls. 14th European Conference on Earthquake Engineering, Ohrid, Republic of Macedonia, August 30-September 03, 2010. (2010)
  26. Vicente, R.; Rodrigues, H.; Varum, H.; Mendes da Silva, J.A.R.; Evaluation of Strengthening Techniques of Traditional Masonry Buildings: Case study of a four-building aggregate. Journal of Performance of Constructed Facilities. http://dx.doi.org/10.1061(ASCE)CF.1943-5509.0000164. (2010)
  27. HAZUS; Earthquake Loss Estimation Methodology - Technical and User Manuals. Federal Emergency Management Agency, Washington D.C..  (1999)
  28. Pagnini, L.C.; Vicente, R.; Lagomarsino, S.; Varum, H. - A mechanical model for the seismic vulnerability assessment of old masonry buildings - Journal Earthquakes and Structures, Technopress, Manuscript Ref. EAS06260A. (2010)
  29. Fajfar, P.; Capacity spectrum method based on inelastic demand spectra. Earthquake Engineering and Structural Dynamics, Vol.28, pp.979-993. (1999)
  30. Vicente, R.; Rodrigues, H.; Varum, H.; Costa, A.; Mendes da Silva, J.A.R.: Performance of masonry enclosure walls: Lessons learnt from recent earthquakes - Earthquake Engineering and Engineering Vibration, Springer - Manuscript reference EEEV-11-084.R1, Vol. 10, N.4, December

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