THE RISK-ORIENTED APPROACH TO THE DEVELOPMENT OF CONTROL METHOD

Author:

Serenkov P. S.,Hurevich V. L.,Movlamov M. R.,Yetumya A. S.

Abstract

The necessity for scientific and methodical study of methods for monitoring the characteristics of flameresistance of building structures has the highest priority in the field of fire safety. The aim of this work was to provide the required degree of reliability of the results of quality control of flame-resistant coatings of building structures and high efficiency of decisions due to the risk-based approach to the development of control methods.Substantiated risk-based approach to the development of methods of control, involving the consideration on the basis of process model, control flame-resistance of building object in all possible potential problems that can cause the risk of incorrect decision-making. A model of the risks arising from the control of the flameretardant coating thickness has been developed. Two major risk groups have been identified. The first group is related to the uncertainty of coating thickness measurement at a single control point. The second group of risks is related to the unrepresentativeness of selective control over the entire surface of the construction object as a whole Potential risk sources have been identified for each group. For the entire range of sources of particular risks the results of studies of the mechanisms of their manifestation, the estimated degree of influence on the accuracy of the control of compliance of flame-retardant coating thickness requirements. The analysis is carried out on the basis of both theoretical and experimental statistical studies on a number of construction projects.According to the results of the analysis of all particular risks of control unreliability, rational ways of their minimization in the form of technical or organizational and technical measures, which are refl in the developed project of the control method, are proposed. Project control method was built on the basis of a agreed scheme of control of the thickness of the fl coating of building structures sequentially the three parties. Formulated and solved the task of the metrological control of the thickness of the flame-retardant coating as indirect measurement methods non-destructive thickness measurements. Theoretical and applied aspects of the process of flame-retardant coating thickness control of building structures under conditions of high risk of making incorrect decisions on the results of control are considered.

Publisher

Belarusian National Technical University

Subject

General Earth and Planetary Sciences,Water Science and Technology,Geography, Planning and Development

Reference9 articles.

1. Outinen J., Samec J., Sokol Z. Research on Fire Protection Methods and a Case Study «Futurum». Procedia Engineering, vol. 40, 2012, pp. 334–340.

2. Gian-Luca F. Porcari, Ehab Zalok, Waleed Mekky. Fire induced progressive collapse of steel building constructions: A review of the mechanisms. Engineering Constructions, vol. 82, 2015, pp. 261–267.

3. Nedviga E.S., Solov'eva K.I., Kiselev S.S. Sposoby zashchity stroitel'nykh konstruktsii ot ognevogo vozdeistviya [Methods of protection of building structures from the impact of fire]. Moscow, Young scientist Publ., 2015.

4. Fedorov V.S., Levitsky V.E., Molchadsky I.S., Alexandrov A.V. Ognestoikost' i pozharnaya opasnost' stroitel'nykh konstruktsii. [Fire-Resistance and fi danger of building constructions]. Moscow, DIA Publ., 2009, 408 p.

5. Mosolkov I.L., Plyusnina G.F., A. Frolov A. Ognestoikost' stroitel'nykh konstruktsii. [Fire-Resistance of building structures]. Moscow, Special Equipment Publ., 2001, 496 p.

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