Геоэкология Инженерная геология Гидрогеология Геокриология · 2019 · 15 citations · 3 references
EngineeringIntensity Attenuation PeculiaritiesEarthquake HazardsEarthquake ScenarioEarth ScienceGeotechnical EngineeringGeophysicsReliability EngineeringEarthquake SourceSeismic AnalysisEarthquake ForecastingEmergency ModeEarthquake EngineeringSeismic ImagingGeographyStructural Health MonitoringRussian Federation TerritoryEarthquake Risk MitigationSeismic Hazard ZoningEarthquake Loss EstimationSeismologyCivil EngineeringGeomechanicsSeismic HazardCase Studies
The methods and results of seismic hazard zoning are investigated for the Russian Federation territory and abroad. The input data used in the zoning procedure, aimed at revealing the boundaries of areas with stable seismic intensity attenuation parameters have been analyzed. The zoning procedure has been developed for determining the boundaries of territories, within which the macroseismic field parameters (i.e., the coefficients in N.V. Shebalin’s equation; the orientation of the elliptic isoseist axes, as well as the ratio of their semi-axes) show close values in each point. Examples are given in distinguishing zones characterized by quasi-stable parameters for separate regions, as well as in calibrating the computer model of the macroseismic field. The case studies are considered in the presence of a complete set of input data and under conditions of their insufficiency. The efficiency of the macroseismic field calibrated models application in the Extremum system in order to increase the reliability of near real time earthquake loss estimations is shown.
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Loss caused by earthquakes: rapid estimates
Nina Frolova, Valery Larionov, J. G. Bonnin et al. · Natural Hazards · 2016 · 16 citations