Russian Federation
The paper analyzes statistical data on the number of vehicles in Russia, on the number of cars with installed gas cylinder equipment, as well as the number of fires on them. The main causes of fires on cars without a gas cylinder equipment device and with it have been identified and analyzed. Gas cylinder equipment is an integral part of the design, therefore, in a comprehensive assessment of the frequency of fires on the gas-powered cars, it is advisable to take into account statistical data on fires and accidents separately on gas cylinder equipment. Using the proposed method, statistical indicators were determined to determine the frequency of fires at facilities with the placement of gas-powered vehicles. Calculated values of the frequency of fire occurrence have been obtained, which can be used in calculating fire risk at facilities for the storage and maintenance of cars, including those with installed gas cylinder equipment.
car, gas cylinder equipment, frequency of fire occurrence, fire risk calculation
1. Ob utverzhdenii Energeticheskoj strategii Rossijskoj Federacii na period do 2035 goda: rasporyazhenie Pravitel'stva Ros. Federacii ot 9 iyunya 2020 g. № 1523-r. Dostup iz inform.-pravovogo portala «Garant».
2. Salykov B.R., Murzagaleeva M.M. Perspektivy perevoda avtomobilej na gazomotornoe toplivo // Ustojchivoe razvitie nauki i obrazovaniya. 2018. № 3. S. 210-216.
3. Sravnitel'nyj analiz trebovanij pozharnoj bezopasnosti k predpriyatiyam po obsluzhivaniyu i hraneniyu avtomobilej na gazomotornom toplive / A.Yu. Shebeko [i dr.] // Pozharnaya bezopasnost'. 2019. № 4 (97). S. 78-86.
4. Opredelenie chastoty vozniknoveniya pozhara v Rossii na transporte, rabotayushchem na KPG i SUG/D.M. Gordienko [i dr.] // Pozharnaya bezopasnost'. 2021. № 3 (104). S. 24-31.
5. Cheshko I.D., Plotnikov V.G. Analiz ekspertnyh versij vozniknoveniya pozhara: v 2-h kn. SPb.: VNIIPO MCHS Rossii, 2012. Kn. 2. 364 s.
6. Posobie po opredeleniyu raschetnyh velichin pozharnogo riska dlya proizvodstvennyh ob"ektov. M.: VNIIPO MCHS Rossii, 2019. 242 s.
7. Merkulov A.P., Kozhevin D.F. K voprosu opredeleniya chastoty vozniknoveniya pozhara v zdaniyah razlichnyh klassov funkcional'noj pozharnoj opasnosti // Problemy upravleniya riskami v tekhnosfere. 2022. № 2 (62). S. 34-41.
8. Metodika opredeleniya raschetnyh velichin pozharnogo riska na proizvodstvennyh ob"ektah (utv. prikazom MCHS Rossii ot 10 iyulya 2009 g № 404). Dostup iz inform.-pravovogo portala «Garant».
9. Vzryvy gazovyh ballonov, prichiny i posledstviya. URL: https://cyberleninka.ru/article/n/vzryvy-gazovyhballonov-prichiny-i-posledstviya (data obrashcheniya: 01.09.2020).
10. International fire engineering guidelines. Edition 2005 (Mezhdunarodnoe rukovodstvo po protivopozharnoj zashchite. Izdanie 2005 goda); PD 7974-7:2003 «Application of fire safety engineering principles to the design of buildings. Probabilistic risk assessment».
11. Pozhary i pozharnaya bezopasnost' v 2020 g.: stat. sb. // Statistika pozharov i ih posledstvij. M.: VNIIPO MCHS Rossii, 2021. 27 s.
12. Gordienko D.M., Shebeko Yu.N. Obespechenie pozharovzryvobezopasnosti mnogotoplivnyh avtozapravochnyh stancij // AGZS + al'ternativnoe toplivo. 2010. № 4 (52). S. 42-48.
13. Pokazateli sostoyaniya bezopasnosti dorozhnogo dvizheniya // Vygruzka pokazatelej BDD/forma 1-BDD (razdel 3). URL: http://www.gibdd.rf/ (data obrashcheniya: 19.09.2023).
14. Brazhnikov D.S. Preimushchestva i nedostatki gazomotornogo topliva // Studencheskaya nauka - vzglyad v budushchee: materialy XV Vseros. studencheskoj nauch. konf. Krasnoyarsk, 2020. S. 42-45.
15. Merkulov A.P., Kozhevin D.F. Opredelenie chastoty vozniknoveniya pozhara v zdaniyah razlichnyh klassov funkcional'noj pozharnoj opasnosti v zavisimosti ot ploshchadi zdaniya // Nauch.-analit. zhurn. «Vestnik S.-Peterb. unta GPS MCHS Rossii». 2022. № 3. S. 34-41.
16. SP 4.13130.2013. Sistemy protivopozharnoj zashchity. Ogranichenie rasprostraneniya pozhara na ob"ektah zashchity. Trebovaniya k ob"emno-planirovochnym i konstruktivnym resheniyam. URL: docs.cntd.ru›document/1200101593 (data obrashcheniya: 16.09.2023).
17. NFPA 30A. Code for Motor Fuel Dispensing Facilities and Repair Garages. URL: nfpa.org›codes-and-standards (data obrashcheniya: 16.09.2023).
18. Brecher A., Epstein A.K., Breck A. Review and analysis of potential safety impacts of and regulatory barriers to fuel efficiency technologies and alternative fuels in medium- and heavy-duty vehicles (Report № DOT HS 812 159). Washington, DC: National Highway Traffic Safety Administration, 2015.
19. Pozharoopasnost' gazoballonnyh avtomobilej / E.E. Prostov [i dr.] // Aktual'nye voprosy pozharnoj bezopasnosti. 2022. № 1 (11). S. 11-22.
20. Hariti R., Fekih M., Saighi M. Numerical simulation of heat transfer by natural convection in a storage tank // International Journal of Application or Innovation in Engineering & Management (IJAIEM). 2013. № 2 (8). P. 340-343.
21. Pozhary i pozharnaya bezopasnost' v 2019 g.: stat. sb. // Statistika pozharov i ih posledstvij. M.. FGBU VNIIPO MCHS Rossii, 2020. 27 s.