Published 2002 | Version v1
Miscellaneous

CN earthquake prediction algorithm and the monitoring of the future strong Vrancea events

  • 1. Department of Earth Sciences, Parma University, Parma (Italy)
  • 2. National Institute of Research and Development for Earth Physics, PO Box MG-2, 12 Calugareni st., Bucharest-Magurele 077125 (Romania)
  • 3. International Institute for Earthquake Prediction, Theory and Mathematical Geophysics, Moscow (Russian Federation)
  • 4. SAND Group, Abdus Salam International Center for Theoretical Physics, Trieste (Italy)
  • 5. Department of Earth Sciences, University of Trieste, Via Weiss, 4, I-34127 Trieste (Italy)

Description

The strong earthquakes originating at intermediate-depth in the Vrancea region (located in the SE corner of the highly bent Carpathian arc) represent one of the most important natural disasters able to induce heavy effects (high tool of casualties and extensive damage) in the Romanian territory. The occurrence of these earthquakes is irregular, but not infrequent. Their effects are felt over a large territory, from Central Europe to Moscow and from Greece to Scandinavia. The largest cultural and economical center exposed to the seismic risk due to the Vrancea earthquakes is Bucharest. This metropolitan area (230 km2 wide) is characterized by the presence of 2.5 million inhabitants (10% of the country population) and by a considerable number of high-risk structures and infrastructures. The best way to face strong earthquakes is to mitigate the seismic risk by using the two possible complementary approaches represented by (a) the antiseismic design of structures and infrastructures (able to support strong earthquakes without significant damage), and (b) the strong earthquake prediction (in terms of alarm intervals declared for long, intermediate or short-term space-and time-windows). The intermediate term medium-range earthquake prediction represents the most realistic target to be reached at the present state of knowledge. The alarm declared in this case extends over a time window of about one year or more, and a space window of a few hundreds of kilometers. In the case of Vrancea events the spatial uncertainty is much less, being of about 100 km. The main measures for the mitigation of the seismic risk allowed by the intermediate-term medium-range prediction are: (a) verification of the buildings and infrastructures stability and reinforcement measures when required, (b) elaboration of emergency plans of action, (c) schedule of the main actions required in order to restore the normality of the social and economical life after the earthquake. The paper presents the following issues: 1. The CN Algorithm; 2. Input Data; 3. Retrospective Application of the CN Algorithm to Vrancea Region; 4. Monitoring of Vrancea Seismicity in the Period 1994.1.1 - 2002.1.1

Availability note (English)

Available from author(s) or National Institute of Research and Development for Earth Physics, PO Box MG-2, 12 Calugareni st., Bucharest-Magurele 077125 (RO)
Part of:
25 Years of Research in Earth Physics and One Century of Seismology in Romania

Additional details

Publishing Information

Publisher
National Institute of Research and Development for Earth Physics
Imprint Place
Bucharest (Romania)
Imprint Title
25 Years of Research in Earth Physics and One Century of Seismology in Romania
Imprint Pagination
53 p.
Journal Page Range
p. 40-42

Conference

Title
25 Years of Research in Earth Physics and One Century of Seismology in Romania
Dates
27-29 Sep 2002
Place
Bucharest (Romania)

INIS

Country of Publication
Romania
Country of Input or Organization
Romania
INIS RN
36051934
Subject category
S58: GEOSCIENCES;
Resource subtype / Literary indicator
Conference, Non-conventional Literature
Descriptors DEI
ALGORITHMS; BUILDINGS; EARTHQUAKES; FORECASTING; HUMAN POPULATIONS; RISK ASSESSMENT; ROMANIA; SEISMICITY
Descriptors DEC
DEVELOPING COUNTRIES; EASTERN EUROPE; EUROPE; MATHEMATICAL LOGIC; POPULATIONS; SEISMIC EVENTS

Optional Information

Notes
8 refs., 1 fig.