* Metadata of the article in the English version is available in full starting in 2016.

Software design fire presering training and fitness complex for training of rescuers and fire

UDC 37.018.4:614.8
Authors Volochko Aleksandr Tikhonovich, Grand PhD in Technical Sciences, Professor
Podbolotov Kirill Borisovich, PhD in Technical Sciences
Yashenya Dmitriy Nikolaevich
Bardushko Sergey Nikolaevich

Abstract Purpose. The research is dedicated to substantiation of the choice of ways and means to protect building structures of educational and training systems for training rescuers and firefighters from repeated exposure to high temperature (1200 ?C), as well as the development of testing methods of fire protection structures of these objects.
Methods. The analysis of the operation of educational and training systems for training rescuers and firefighters in Europe and the USA. The analysis of thermal properties of materials with high fire resistance and thermal stability.
Findings. The results of the analysis show that the most effective means of fire protection of structures from the effects of repeated high temperature are refractory ceramic materials having high thermal resistance.
Application field of research. The results can be used in the design of fire protection structures of educational and training systems for the training of fire rescue, as well as objects with a high level of responsibility (tunnels, high-rise buildings).
Conclusions. Protection of constructions of educational and training complexes for the preparation of fire-and rescue workers from repeated high temperature exposure may be achieved through structural fire protection with the use of refractory ceramic materials.
Keywords fire reliability; multiple high-temperature exposure, fire protection equipment; fire protection system, fire-resistant ceramic materials; thermal stability; test method
  References
1. Kitayev-Smyk L.A. Psichologiya stressa [Stress psychology]. Moscow: Science, 1983. 368 p. (rus).
2. Bodrov V.A., Orlov V.Ya. Psichologiya i nadyognost: chelovek v sistemakh upravleniya tekhnikoy [Psychology and reliability: people in machine control systems]. Moscow: Russian Academy of Sciences Institute of Psychology, 1998. 288 p. (rus).
3. Home – WHP Trainingtowers, available at: http://www.trainingtowers.com (accessed: 09.11.2015)..
4. Live Fire Training Towers, available at: http://www.firefacilities.com (accessed: 09.11.2015)..
5. Dgakayevich T.B., Manturov Z.A., Toturbiyev A.B., Porsukov A.A., Alhasov M.A. Smes` dlya izgotovleniya zharostoykogo betona [The mixture for the production of heat-resistant concrete]. Patent RF, no. 2330825, 2008. (rus).
6. Volochko A.T., Shipko A.A., Dzyomin M.I., Budzinskaya A.V. Monitoring primeneniya ogneupornyh materialov na predpriyatiyah Respubliki Belarus` [Monitoring the use of refractory materials enterprises in the Republic of Belarus]. Lit`yo i metallurgiya. 2011. No. 4 (63). Pp. 53–59. (rus).
7. Interstate Standart 28874-2004. Refractories. Classification. Affirmed 01.01.2006. Minsk: Interstate Council for Standardization, Metrology and Certification: Interstate Technical Committee for Standardization ITC 9 «Refractory», 2004. 20 р. (rus).
8. Khoroshavin L.B., Perepelictyn V.A., Kononov V.A. Magnezial`nyye ogneupory. Spravochnik, vol. 2 [Magnesia refractories. Directory, V.2]. Moscow: Intermet Inginiring, 2001. 576 p. (rus).
9. Alfyorov A.I. Elektrotermicheskiye protsessy i ustanovki [Electrothermal processes and installations]. Krasnoyarsk: Siberian Federal University, 2007. 360 p. (rus).
10. Kascheyev I.D., Grishenkova Е.Е. Slugba ogneuporov. Kniga 2. Spravochnik [Service refractories. Book 2. Directory]. Moscow: Intermet Inginiring, 2002. 662 p. (rus).
11. Balkevich V.L. Tekhnicheskaya keramika [Technical ceramics]. 2 edition. Moscow: Stroyizdat, 1984. 254 p. (rus).
12. Avakumov G.N., Gusev А.А. Kordierit – perspectivniy keramicheskiy material [Cordierite – promising ceramic material]. Novosibirsk: Nauka, 1999. 167 p. (rus).