Logo Lanfrica
  • Accueil
  • Atlas
  • Analyses
  • Documentation
  • Sign in

© 2026 Lanfrica. Tous droits réservés. Tous les droits d'auteur des ressources affichées sur le site Web Lanfrica appartiennent aux détenteurs de droits d'auteur d'origine, sauf indication contraire explicite.

Optimization the reliability of emergency safety barriers based on the subjective safety analysis and evidential reasoning theory. Case study

Type de record:

paper
Créateur:
DaaInn
Éditeur:
Eme
Hôte:
Purpose This study aims to improve the reliability of emergency safety barriers by using the subjective safety analysis based on evidential reasoning theory in order to develop on a framework for optimizing the reliability of emergency safety barriers. Design/methodology/approach The emergency event tree analysis is combined with an interval type-2 fuzzy-set and analytic hierarchy process (AHP) method. In order to the quantitative data is not available, this study based on interval type2 fuzzy set theory, trapezoidal fuzzy numbers describe the expert's imprecise uncertainty about the fuzzy failure probability of emergency safety barriers related to the liquefied petroleum gas storage prevent. Fuzzy fault tree analysis and fuzzy ordered weighted average aggregation are used to address uncertainties in emergency safety barrier reliability assessment. In addition, a critical analysis and some corrective actions are suggested to identify weak points in emergency safety barriers. Therefore, a framework decisions are proposed to optimize and improve safety barrier reliability. Decision-making in this framework uses evidential reasoning theory to identify corrective actions that can optimize reliability based on subjective safety analysis. Findings A real case study of a liquefied petroleum gas storage in Algeria is presented to demonstrate the effectiveness of the proposed methodology. The results show that the proposed methodology provides the possibility to evaluate the values of the fuzzy failure probability of emergency safety barriers. In addition, the fuzzy failure probabilities using the fuzzy type-2 AHP method are the most reliable and accurate. As a result, the improved fault tree analysis can estimate uncertain expert opinion weights, identify and evaluate failure probability values for critical basic event. Therefore, suggestions for corrective measures to reduce the failure probability of the fire-fighting system are provided. The obtained results show that of the ten proposed corrective actions, the corrective action “use of periodic maintenance tests” prioritizes reliability, optimization and improvement of safety procedures. Research limitations/implications This study helps to determine the safest and most reliable corrective measures to improve the reliability of safety barriers. In addition, it also helps to protect people inside and outside the company from all kinds of major industrial accidents. Among the limitations of this study is that the cost of corrective actions is not taken into account. Originality/value Our contribution is to propose an integrated approach that uses interval type-2 fuzzy sets and AHP method and emergency event tree analysis to handle uncertainty in the failure probability assessment of emergency safety barriers. In addition, the integration of fault tree analysis and fuzzy ordered averaging aggregation helps to improve the reliability of the fire-fighting system and optimize the corrective actions that can improve the safety practices in liquefied petroleum gas storage tanks.

Visit

doi.org

Licenses

https://www.emerald.com/insight/site-policies

Similaires

Failure probability assessment of emergency safety barriers integrating an extension of event tree analysis and Fuzzy type‐2 analytic hierarchy processAccess, Safety, and Barriers in Adoption of Emergency Laparoscopy Surgery for Trauma Patients in a Low-Resource SettingConduction of Road Safety Audit Using Road Safety Cost-Benefit Analysis: A Case Study of Warri-Port Harcourt Highway, Delta State, NigeriaExploring Barriers to Medication Safety in an Ethiopian Hospital Emergency Department: A Human Factors Engineering ApproachEMPIRICAL STUDY OF COMPLIANCE WITH OCCUPATIONAL HEALTH AND SAFETY LEGISLATION: A CASE STUDY OF THE CONSTRUCTION SITEAnalysis of Geometric Design Factors Influencing Driver Behaviour and Road Safety: A Case Study of Rwanda

Failure probability assessment of emergency safety barriers integrating an extension of event tree analysis and Fuzzy type‐2 analytic hierarchy process

Abstract Liquefied petroleum gas (LPG) storage fires and explosions occur due to

Access, Safety, and Barriers in Adoption of Emergency Laparoscopy Surgery for Trauma Patients in a Low-Resource Setting

Abstract Introduction This study analyzes barriers to the adoption of emergency laparosc

Conduction of Road Safety Audit Using Road Safety Cost-Benefit Analysis: A Case Study of Warri-Port Harcourt Highway, Delta State, Nigeria

Exploring Barriers to Medication Safety in an Ethiopian Hospital Emergency Department: A Human Factors Engineering Approach

Objective: To describe challenges associated with the medication use process and potential medicatio

EMPIRICAL STUDY OF COMPLIANCE WITH OCCUPATIONAL HEALTH AND SAFETY LEGISLATION: A CASE STUDY OF THE CONSTRUCTION SITE

In general, the construction industry is one of the world’s occupational settings that has high inci

Analysis of Geometric Design Factors Influencing Driver Behaviour and Road Safety: A Case Study of Rwanda

This study investigates the influence of geometric design parameters on driver behaviour and road sa