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논문 기본 정보

자료유형
학술저널
저자정보
Mehdi Soltanmohammadi (University of Tehran) Morteza Saberi (Curtin University of Technology) Jin Hee Yoon (Sejong University) Khatereh Soltanmohammadi (Mehralborz University) Peiman Pazhoheshfar (Islamic Azad University)
저널정보
대한산업공학회 Industrial Engineering & Management Systems Industrial Engineering & Management Systems 제14권 제3호
발행연도
2015.9
수록면
221 - 235 (15page)

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초록· 키워드

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Risk assessment is an important phase of risk management. It is the stage in which risk is measured thoroughly to achieve effective management. Some factors such as probability and impact of risk have been used in the literature related to construction projects. Because in high-rise projects safety issues are paramount, this study has tried to develop a quantifying technique that takes into account three factors: probability, impact and Safety Performance Index (SPI) where the SPI is defined as the capability of an appropriate response to reduce or limit the effect of an event after its occurrence with regard to safety pertaining to a project. Regarding risk-related literatures which cover an uncertain subject, the proposed method developed in this research is based on a fuzzy logic approach. This approach entails a questionnaire in which the subjectivity and vagueness of responses is dealt with by using triangular fuzzy numbers instead of linguistic terms. This method returns a Risk Critical Point (RCP) on a zoning chart that places risks under categories: critical, critical-probability, critical-impact, and non-critical. The high-rise project in the execution phase has been taken as a case study to confirm the applicability of the proposed method. The monitoring results showed that the RCP method has the inherent ability to be extended to subsequent applications in the phases of risk response and control.

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ABSTRACT
1. INTRODUCTION
2. RISK CRITICAL POINT (RCP) FRAMEWORK
3. METHOD TESTING
4. MONITORING THE RESULTS
5. CONCLUSIONS
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