|

Seismic Risk Analysis Methods for the Population and Urbanized Territories

Authors: Aleksandrov A.A., Larionov V.I., Sushchev S.P., Frolova N.I., Gumerov A.K. Published: 15.04.2015
Published in issue: #2(59)/2015  
DOI: 10.18698/1812-3368-2015-2-110-124

 
Category: Informatics, Computer Engineering and Control | Chapter: System Analysis, Control and Information Processing  
Keywords: risk analysis, seismic, seismic risk, vulnerability, damage rule, destruction law, GIS-technology, seismic risk map

The factors determining seismic risk are considered. Description of uniform analysis methods of the seismic risk for the inhabitants and the built-up territories during destructive earthquakes is provided. Methodical approaches to obtaining the damage rules and people injuries, indicators of vulnerability definition and risk are offered. Characteristic parameters of the normal law function of building vulnerability, including the information about consequences of destructive earthquakes over the last hundred years, are received on the basis of statistical selection. Dependencies between the characteristics of urbanized territory and its vulnerability range are established. The technique of quantitative danger assessment, vulnerability and risk of earthquake emergency is developed. Recommendations are provided to create thematic seismic risk maps with application of GIS-technologies. Stage-by-stage creation of the GIS-project is presented. The seismic risk map fragment constructed in the way of qualitative background is given.

References

[1] Sobolev G.A., ed. Otsenka seysmicheskoy opasnosti i seysmicheskogo riska [Evaluation of seismic danger and seismic risk]. Moscow, Tsentr BSTS Publ., 1997. 54 p.

[2] Larionov V.I. Zakony razrusheniya zdaniy. Analiz seysmicheskogo riska, spasenie i zhizneobespechenie naseleniya pri katastroficheskikh zemletryaseniyakh (seysmicheskie, metodologicheskie i metodicheskie aspekty) [Principles of damages to buildings. Analysis of seismic risk, life-saving and life-support at catastrophic earthquakes (seismic, methodological, and methodical aspects]. Part. 1. Shoygu S.K., ed. Moscow, GK RF po GOChS, Institut Litosfery RAN Publ., 1992, pp. 157-176.

[3] Shebalin N.V. Metody ispol’zovaniya inzhenerno-seysmologicheskikh dannykh pri seysmicheskom rayonirovanii. Seysmicheskoe rayonirovanie SSSR [Methods to use engineering-seismologic data at seismic zoning]. Moscow, Nauka Publ., 1968, pp. 95-121.

[4] Komplekt kart OSR-97-A, V, S i drugie materialy dlya Stroitel’nykh norm i pravil - SNiP "Stroitel’stvo v seysmicheskikh rayonakh". Moscow, OIFZ Publ., 1998.

[5] Novyy katalog sil’nykh zemletryaseniy na territorii SSSR [New catalogue of strong earthquakes on the USSR territory]. Moscow, Nauka Publ., 1977. 535 p.

[6] Shebalin N.V., Ershov I.A., Shestoperov G.S. Uluchshennyy variant shkaly seysmicheskoy intensivnosti (MMSK-86) na baze shkal MSK-64 i MSSSS-73 (zaklyuchitel’nyy) [Improved version of the seismic activity scale (MMSK-86) based on the scales MSK-64 and MCCCC-73 (final version)]. Moscow, MSSSS, IFZ Publ., 1986. 61 p.

[7] Kotlyarevskiy V.A., Larionov V.I., Sushchev S.P., ed. Entsiklopediya bezopasnosti: stroitel’stvo, promyshlennost’, ekologiya. V 3 t. T. 1. Avariynyy risk. Vzryvnye i udarnye vozdeystviya [Encyclopedia of safety: building, industry, ecology. In 3 vol. Vol. 1. Accidental risk. Explosion and Shock Actions]. Moscow, Nauka Publ., 2005. 696 p.

[8] Larionov V.I., Frolova N.I. Osobennosti otsenki uyazvimosti dlya seysmicheskikh vozdeystviy. Prirodnye opasnosti Rossii: Monografiya Rossiyskoy akademii nauk. V 6 t. T. 6. Otsenka i upravlenie prirodnymi riskami [Features of vulnerability evaluation for seismic forces. Natural hazards in Russia: Monograph of the Russian Academy of Sciences. In 6 vol. Vol. 6. Natural risks estimation and control]. Moscow, KRUKPubl., 2003, pp. 120-130.

[9] Kotlyarevskiy V.A., Larionov V.I., Sushchev S.P., ed. Entsiklopediya bezopasnosti: stroitel’stvo, promyshlennost’, ekologiya. V 3 t. T. 3. Seysmostoykost’ i teplozashchita sooruzheniy [Encyclopedia of safety: building, industry, ecology. In 3 vol. Vol. 3. Seismic stability and thermal protection of constructions]. Moscow, ASVPubl., 2010. 640 p.

[10] Shoygu S.K., Goncharov S.F., Lobanov G.P. Zemletryaseniya: zakonomernosti formirovaniya i kharakteristika poter’ naseleniya [Earthquakes: formation mechanism, characteristics of civilian casualties]. Moscow, Vserossiyskiy tsentr meditsiny i katastrof "Zashchita" Publ., 1998. 124 p.

[11] Aleksandrov A.A., Larionov V.I., Sushchev S.P. United methodology of the risk analysis for man-caused and natural emergency situations. Vestn. Mosk. Gos. Tekh. Univ. im. N.E. Baumana, Estestv. Nauki [Herald of the Bauman Moscow State Tech. Univ., Nat. Sci.], 2015, no. 1, pp. 112-130 (in Russ.).