Technique of development of information and technical method of localization of emergency situations of medical and biological character of the regional danger distribution level

Authors

DOI:

https://doi.org/10.15587/2313-8416.2019.173355

Keywords:

emergency situation, hazards of a medical and biological nature, localization, information technical method

Abstract

The paper analyzes the current state of danger of the emergence and spread of emergency situations of a medical-biological nature, caused by human infectious diseases in Ukraine. The assumption of the impact on the process of emergency distribution of natural factors: humidity and ambient temperature, the dynamics of movement of air masses is substantiated. An approach to modeling the processes of prevention and localization of emergency situations of a medical-biological nature is proposed. On the basis of the latter, the structure of the information technology of localization of emergency situations of a medical-biological nature is determined

Author Biographies

Olga Prokopenko, National University of Civil Defenсe of Ukraine Chernyshevskaya str., 94, Kharkiv, Ukraine, 61023

Scientific Department on Problems of Civil Protection and Technogenic and Ecological Safety

Research Center

Roman Shevchenko, National University of Civil Defenсe of Ukraine Chernyshevskaya str., 94, Kharkiv, Ukraine, 61023

Doctor of Technical Sciences, Senior Researcher

Scientific Department on Problems of Civil Protection and Technogenic and Ecological Safety

Research Center

References

Shevchenko, R. I. (2018) Formuvannia matematychnoi modeli orhanizatsiino-tekhnichnoho metodu skorochennia nehatyvnykh naslidkiv nadzvychainykh sytuatsii medyko-biolohichnoho kharakteru rehionalnoho rivnia poshyrennia nebezpeky. Komunalne hospodarstvo mist. Seriia: Tekhnichni nauky ta arkhitektura, 142, 124–131.

Prokopenko, O. V., Shevchenko, R. I. (2018). Informatsiina pidtrymka zakhodiv z lokalizatsii nadzvychainykh sytuatsii medyko-biolohichnoho kharakteru. Suchasni napriamy rozvytku informatsiino-komunikatsiinykh tekhnolohii ta zasobiv upravlinnia. Baku-Kharkiv-Zhilina, 84.

Analitychnyi ohliad stanu tekhnohennoi ta pryrodnoi bezpeky v Ukraini za 2018 rik. Available at: https://www.dsns.gov.ua/ua/Analitichniy-oglyad-stanu-tehnogennoyi-ta-prirodnoyi-bezpeki-v--Ukrayini-za-2015-rik.html

Shevchenko, R. I. (2018). Formuvannia alhorytmu ta protsedur orhanizatsiino-tekhnichnoho metodu skorochennia nehatyvnykh naslidkiv nadzvychainykh sytuatsii medyko-biolohichnoho kharakteru rehionalnoho rivnia poshyrennia nebezpeky. Problemy nadzvychainykh sytuatsii, 27, 175–186.

Zhuang, Y. (2017). Constructing Effective Mechanism of Reflection on Major Accidents Zhang Supei. China Safety Science Journal, 11. Available at: http://oversea.cnki.net/kns55/oldNavi/n_Catalog.aspx?NaviID=48&Flg=local&YearID

Qian, Y., Juncheng, J., Hanhua, Y. (2012). Research on the Emergency Response System of Major Dangerous Chemical Accident on Highway based on the GIS. Procedia Engineering, 45, 716–721. doi: http://doi.org/10.1016/j.proeng.2012.08.229

Xianfu, F., Zaoping, F., Yansong, H. (2012). Analysis on Chemical Industry Park Emergency Drill Escape Paths based on WebGIS. Procedia Engineering, 45, 721–726. doi: http://doi.org/10.1016/j.proeng.2012.08.230

Management in the Case of Strong Earthquakes. Information Technology180 for Disaster Management (2001). A collection of selected international papers. Asian Disaster Reduction Center. Kobe, 94–105.

Li, Q., Ruan, W., Shao, W., Huang, G. (2012). Information disclosure in an environmental emergency. Disaster Prevention and Management: An International Journal, 26 (2), 134–147. doi: http://doi.org/10.1108/dpm-06-2016-0125

Ouyang, Z., Wei, J., Xiao, Y., Wang, F. (2017). Media attention and corporate disaster relief: evidence from China. Disaster Prevention and Management: An International Journal, 26 (1), 2–12. doi: http://doi.org/10.1108/dpm-10-2015-0247

Martin, N., Rice, J. (2012). Emergency communications and warning systems: Determining critical capacities in the Australian context. Disaster Prevention and Management: An International Journal, 21 (5), 529–540. doi: http://doi.org/10.1108/09653561211278671

Yeo, J., Comfort, L. K. (2017). An expected event, but unprecedented damage: Structure and gaps of large-scale response coordination of the 2011 Thailand floods. Disaster Prevention and Management: An International Journal, 26 (4), 458–470. doi: http://doi.org/10.1108/dpm-02-2017-0048

Guo, X., Kapucu, N. (2015). Network performance assessment for collaborative disaster response. Disaster Prevention and Management: An International Journal, 24 (2), 201–210. doi: http://doi.org/10.1108/dpm-10-2014-0209

Azarenko, E. V., Goncharenko, Iu. Iu., Diviziniuk, M. M., Kovach, V. E. (2015). Chrezvychainye situatsii, obuslovlennye informatsionnymi potokami. Pravove, normativne ta metrologіchne zabezpechennia sistemi zakhistu іnformatsіi v Ukrainі, 2, 21–25.

Strilets, V. M., Borodych, P. Yu., Rosokha, S. V. (2012). Zakonomirnosti diialnosti riatuvalnykiv pry provedenni avariino-riatuvalnykh robit na stantsiiakh metropolitenu. Kharkiv: KP «Miska drukarnia», 112.

Babaryka, I. H., Yeremenko, S. A., Kryvulkin, I. M., Lievtierov, O. A., Shevchenko, R. I. (2018). Rozvytok innovatsiinykh metodiv skorochennia naslidkiv nadzvychainykh sytuatsii pryrodnoho kharakteru. Problemy nadzvychainykh sytuatsii, 28, 27–38.

Romaniukha, A. A. (2012). Matematicheskie modeli v immunologii i epidemiologii infektsionnykh zabolevanii. Moscow: BINOM. Laboratoriia znanii, 293.

Published

2019-07-16

Issue

Section

Technical Sciences