Assessing the Social and Economic Indicators of Seismic Risk Using the Town of Angarsk as an Example
暂无分享,去创建一个
V. Ruzhich | V. Larionov | N. Frolova | A. Ugarov | E. Levina | L. P. Berzhinskaya | S. Suchshev | N. Malaeva
[1] Juan Camilo Gomez-Zapata,et al. Variable-resolution building exposure modelling for earthquake and tsunami scenario-based risk assessment: an application case in Lima, Peru , 2021, Natural Hazards and Earth System Sciences.
[2] Guoxin Wang,et al. Assessment and determination of earthquake casualty gathering area based on building damage state and spatial characteristics analysis , 2021, International Journal of Disaster Risk Reduction.
[3] S. Lagomarsino,et al. Comparative analysis of the fragility curves for Italian residential masonry and RC buildings , 2021, Bulletin of Earthquake Engineering.
[4] Juan Camilo Gomez-Zapata,et al. Variable-resolution building exposure modelling for earthquake and tsunami scenario-based risk assessment. An application case in Lima, Peru , 2021 .
[5] S. Lagomarsino,et al. The heuristic vulnerability model: fragility curves for masonry buildings , 2021, Bulletin of Earthquake Engineering.
[6] M. Polese,et al. Seismic risk assessment of residential buildings in Italy , 2020, Bulletin of Earthquake Engineering.
[7] G. Kocharyan,et al. Fault Sliding Modes—Governing, Evolution and Transformation , 2020, Springer Tracts in Mechanical Engineering.
[8] V. Zaalishvili,et al. Seismic Risk of Modern City , 2019, Abstracts of The Second Eurasian RISK-2020 Conference and Symposium.
[9] F. Wenzel,et al. Review of fragility analyses for major building types in China with new implications for intensity-PGA relation development , 2019 .
[10] G. Roberts,et al. Occurrence of partial and total coseismic ruptures of segmented normal fault systems: Insights from the Central Apennines, Italy , 2019, Journal of Structural Geology.
[11] L. Pujades,et al. Probabilistic Assessment of Seismic Risk of Dwelling Buildings of Barcelona. Implication for the City Resilience , 2018, Resilient Cities.
[12] G. Kocharyan,et al. Determination of the PT Conditions that Accompanied a Seismogenic Slip along a Deep Segment of the Marginal Suture of the Siberian Craton , 2018, Doklady Earth Sciences.
[13] F. Meroni,et al. A Damage Scenario for the 2012 Northern Italy Earthquakes and Estimation of the Economic Losses to Residential Buildings , 2017, International Journal of Disaster Risk Science.
[14] N. I. Frolova,et al. Loss caused by earthquakes: rapid estimates , 2017, Natural Hazards.
[15] Massimiliano Pittore,et al. Focus maps: a means of prioritizing data collection for efficient geo-risk assessment , 2015 .
[16] V. Larionov,et al. Complexity in Seismic Risk Assessment at Different Levels with GIS Technology Application , 2015 .
[17] Nelson Lam,et al. Review of methodologies for seismic vulnerability assessment of buildings , 2014 .
[18] N. I. Frolova,et al. Earthquake Casualties Estimation in Emergency Mode , 2011 .
[19] Wu Shaohong,et al. Quantitative Assessment of Seismic Mortality Risks in China , 2011 .
[20] M. Leonard. Earthquake Fault Scaling: Self‐Consistent Relating of Rupture Length, Width, Average Displacement, and Moment Release , 2010 .
[21] E. N. Chernykh,et al. Estimation of the seismic assessment of residential and public buildings based on the data on the earthquake of August 27, 2008 in South Baikal , 2010 .
[22] Rui Pinho,et al. A comparison of seismic risk maps for Italy , 2009 .
[23] David J. Wald,et al. Estimating Casualties for Large Earthquakes Worldwide Using an Empirical Approach , 2009 .
[24] Steven G. Wesnousky,et al. Displacement and Geometrical Characteristics of Earthquake Surface Ruptures: Issues and Implications for Seismic-Hazard Analysis and the Process of Earthquake Rupture , 2008 .
[25] C. Mortgat,et al. CHINA PROBABILISTIC SEISMIC RISK MODEL PART 2 – BUILDING VULNERABLITY AND LOSS ESTIMATION , 2008 .
[26] Martha Liliana Carreño Tibaduiza,et al. Seismic risk evaluation for an urban centre , 2007 .
[27] F. Cotton,et al. Earthquake scaling, fault segmentation, and structural maturity , 2007 .
[28] G. Grünthal,et al. Seismic risk mapping for Germany , 2006 .
[29] B. Ranguelov. SEISMIC RISK MAPPING - STATE OF THE ART IN THE PECO* COUNTRIES (PART 2) , 2006 .
[30] Guido Magenes,et al. DEVELOPMENT OF SEISMIC VULNERABILITY ASSESSMENT METHODOLOGIES OVER THE PAST 30 YEARS , 2006 .
[31] G. Orsini,et al. New Developments in Seismic Risk Assessment in Italy , 2005 .
[32] D. Wells,et al. New empirical relationships among magnitude, rupture length, rupture width, rupture area, and surface displacement , 1994, Bulletin of the Seismological Society of America.
[33] Vít Kárník,et al. Existing Recommendations and Definitions on Disaster Insurance , 1984 .
[34] E. E. F. d'Albe,et al. An approach to earthquake risk management , 1982 .
[35] Paris.. The assessment and mitigation of earthquake risk , 1978 .
[36] C. Lomnitz,et al. A Model for the Occurrence of Large Earthquakes , 1966, Nature.