Risk Assessment of the Fishing Vessel Main Engine by Fuzzy-FMEA Approach

被引:0
作者
Yuniar Endri Priharanto
Rizqi Ilmal Yaqin
Gusti Marjianto
Juniawan Preston Siahaan
M. Zaki Latif Abrori
机构
[1] Politeknik Kelautan dan Perikanan Dumai,Department of Ship Machinery
来源
Journal of Failure Analysis and Prevention | 2023年 / 23卷
关键词
Failure; FMEA; Fuzzy-FMEA; Main engine; RPN;
D O I
暂无
中图分类号
学科分类号
摘要
Maintenance of the Fishing vessel's main engine by a risk assessment of critical components in the system is a crucial factor for operating fishing vessels. This article analyzes the main engine's risk level using the fuzzy-FMEA model. The system components and their failure modes were obtained by direct observation of eight fishing vessels in Batam, Indonesia. The evaluation resulted in a ranking of critical components in a row using C-RPN analysis, namely the injector (200.61), injection pump (159.94), and fuel filter (95.09). In comparison, the F-RPN analysis resulted in changes in the values of the critical components, respectively, namely the injector (454.80), injection pump (358.42), and fuel tank (293.48). The F-RPN value in the investigated analysis is more accurate because in evaluating the data entered, the risk parameter index of the evaluation results. The fuzzy-FMEA model has the advantage of accurately assessing the level of component failure risk on the main engine of fishing vessels because it has accuracy in getting the value of potential risk on C-FMEA in entering risk parameter indicator data. Fuzzy-FMEA model contributes to the existing knowledge of maintenance planning by using risk analysis on critical components of the main engine of fishing vessels.
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页码:822 / 836
页数:14
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  • [1] Saputra RSH(2018)Failure mode and effect analysis (FMEA) applied for risk assessment of fuel oil system on diesel engine of fishing vessel ARPN J. Eng. Appl. Sci. 13 8414-8420
  • [2] Priharanto YE(2020)Fuzzy model for risk assessment of machinery failures Symmetry (Basel) 12 1-26
  • [3] Latif MZA(2018)A quantitative risk analysis by using interval type-2 fuzzy FMEA approach: the case of oil spill Marit. Policy Manag. 45 979-994
  • [4] Petrović DV(2021)A model based on FMEA and Fuzzy TOPSIS for risk prioritization in industrial processes1 Gest. e Prod. 28 1-20
  • [5] Tanasijević M(2021)A DMAIC integrated fuzzy fmea model: a case study in the automotive industry Appl. Sci. 11 1-17
  • [6] Stojadinović S(2020)A hybrid MCDM-based FMEA model for identification of critical failure modes in manufacturing Soft Comput. 24 15733-15745
  • [7] Ivaz J(2018)Risk analysis of ports in maritime industry in Turkey using FMEA based intuitionistic Fuzzy TOPSIS approach ITM Web Conf. 22 1-10
  • [8] Stojković P(2021)Risk identification of FPSO oil and gas processing system based on an improved FMEA approach Appl. Sci. 11 1-19
  • [9] Akyuz E(2021)Fuzzy approaches in failure mode and effect analysis Int. J. Artif. Intell. 19 56-76
  • [10] Celik E(2020)Accident-based FMECA study of Marine boiler for risk prioritization using fuzzy expert system Results Eng. 6 1-16