THERMAL STATE OF STEEL STRUCTURES WITH A COMBINED FIRE PROTECTION SYSTEM UNDER CONDITIONS OF FIRE EXPOSURE

Autor: Oleksandr Dobrostan, Varvara Drizhd, Serhii Novak
Jazyk: angličtina
Rok vydání: 2020
Předmět:
Standard conditions for temperature and pressure
020209 energy
Nuclear engineering
0211 other engineering and technologies
Energy Engineering and Power Technology
Steel structures
02 engineering and technology
fire protection system
Industrial and Manufacturing Engineering
Management of Technology and Innovation
021105 building & construction
Fire protection
lcsh:Technology (General)
0202 electrical engineering
electronic engineering
information engineering

lcsh:Industry
Electrical and Electronic Engineering
Applied Mathematics
Mechanical Engineering
fire protection material
fire exposure
Computer Science Applications
Control and Systems Engineering
critical temperature of steel
Environmental science
Steel plates
lcsh:T1-995
Thermal state
lcsh:HD2321-4730.9
steel structure
Exposure duration
Zdroj: Eastern-European Journal of Enterprise Technologies, Vol 3, Iss 10 (105), Pp 17-25 (2020)
Popis: Given the need tominimize the weight-dimensional indicators of steel structures, the issue of the effective use of a combined fire protection system is relevant. The article deals with the thermal state of steel structures with such a system of fire protection under conditions of fire exposure in the standard temperature mode according to DSTU B V. 1.1-4-98*. The experimental samples used square steel plates with a side of 500mm and a thickness of 5mm and 10mm. The conducted research revealed the peculiarities of dependences of the temperatures of steel structures with passive and reactive fire-retardant materials of two brands on the duration of fire exposure. It was established that these dependences for steel structures with combined, passive, and reactive fire protection systems have a monotonously growing character. The maximum values of the duration of fire exposure are typical of the experimental samples that have the steel plate of the thickness of 10mm, for a critical temperature of steel of 600°C. They are 111min, 101min, 55minutes, respectively, for the combined, passive, and reactive fire protection systems. It was established that a combined fire protection system is characterized by an increase in the duration of reaching the critical temperature of steel in comparison with passive and reactive fire protection systems. This is due to the effective combination of physical and chemical properties of passive and reactive fire-retardant materials. For the duration of fire exposure up to 79min, the value of the duration of reaching the critical temperature of steel for a combined fire protection system exceeds the sum of durations of its achievement, which are typical for passive and reactive fire protection systems. This indicates the effectiveness of a combined system in this range of fire exposure duration. At an increase in the duration of fire exposure, the effectiveness of a combined fire protection system decreases
Databáze: OpenAIRE