Application of FAHP-TOPSIS Method for Weighting and Prioritizing Resilience Indicators in a Combined Cycle Power Plant

Publish Year: 1401
نوع سند: مقاله ژورنالی
زبان: English
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شناسه ملی سند علمی:

JR_AHS-11-2_002

تاریخ نمایه سازی: 20 شهریور 1401

Abstract:

Background & Aims of the Study: Resilience means the ability of a system to predict, tolerate, and adapt to various disturbances and recover quickly to its original state. This study aims to weigh and prioritize the indicators affecting the resilience in a combined cycle power plant using the combined method of FAHP-TOPSIS. Materials and Methods: This is a descriptive-analytical and cross-sectional study conducted at the beginning of ۲۰۲۱ in the Kashan Combined Cycle Power Plant. In the first step, a literature review and semi-structured interviews with ۲۵ experts were conducted to identify the indicators affecting resilience. A total of ۲۰ affecting indicators were identified and divided into three groups: situational awareness, vulnerability, and adaptability. In the next step, we used the Fuzzy Analytical Hierarchy Process (FAHP) to determine the indicators’ weights of each group. In the end, we used the TOPSIS method to perform the final prioritization of the indicators. Results: The final results of prioritizing the indicators that affect resilience based on the outcomes of the TOPSIS method showed that the three indicators of structural stability (final weight=۱), senior management awareness of the roles and responsibilities (final weight=۰.۰۷۵), and understanding and risk acceptance (final weight=۰.۰۶۷) play the most important roles, while logistics support index (final weight=۰.۰۲۹) is the least important indicator in determining the level of resilience. Conclusion: By recognizing and prioritizing the indicators affecting the level of resilience, corrective and preventive measures can be defined and implemented to improve safety and increase the resilience in combined cycle power plants based on the importance of each indicator. Also, the method introduced in this paper can be used as a scientific technique to identify and prioritize resilience indicators in other process industries such as oil and gas and petrochemical industries.

Authors

سیدمهدی موسوی

Occupational Health Engineering, School of Health, Tehran University of Medical Sciences, Tehran, Iran.

مهسا جهادی نائینی

Occupational Health Engineering, School of Health, Isfahan University of Medical Sciences, Isfahan, Iran.

فرزاد بهزادی نژاد

HSE Environmental Management, Faculty of Engineering, Ahvaz Branch, Islamic Azad University, Ahvaz, Iran.

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