Araştırma Makalesi

A STUDY ON MINIMIZING POTENTIAL ACCIDENTS IN SHIP BUNKERING OPERATION THROUGH USE OF FAILURE MODE AND EFFECT ANALYSIS

Cilt: 3 Sayı: 1 30 Haziran 2023
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A STUDY ON MINIMIZING POTENTIAL ACCIDENTS IN SHIP BUNKERING OPERATION THROUGH USE OF FAILURE MODE AND EFFECT ANALYSIS

Öz

It is only possible for companies to maintain their position and advance in the competitive environment by preserving their quality and by developing and improving themselves. In this direction, they need to make quality measurements and analyses. For this purpose, more than one quality improvement method has been developed. One of the techniques for enhancing quality is the Failure Mode and Effect Analysis (FMEA) method. FMEA is an operations management and product development method that classifies failures according to similarity, probability, detectability, and severity to analyze potential failure types of a system. It is a technique that focuses on avoiding risks in products and processes during the production phase and documenting these activities. Its purpose is to prevent poor quality, address potential risks that may cause product defects, identify possible types of defects, and determine their consequences and severity. In this study, the bunkering operation between the fuel barge and a ship, the berthing and anchoring of the fuel barge, the fuel transfer process, the unberthing of the fuel barge, and the preparation for the voyage were handled in three stages and the hazards were defined for each stage. Bunkering operation hazards have been identified by using FMEA have been conducted to reduce operational risks, and suggestions have been made.

Anahtar Kelimeler

Kaynakça

  1. Akyuz, E., Celik, M., Akgun, I., & Cicek, K. (2018). Prediction of human error probabilities in a critical marine engineering operation on-board chemical tanker ship: The case of ship bunkering. Safety science, 110, 102-109.
  2. Arabian-Hoseynabadi, H., Oraee, H., & Tavner, P. J. (2010). Failure modes and effects analysis (FMEA) for wind turbines. International Journal of Electrical Power & Energy Systems, 32(7), 817-824
  3. Aran, G. (2006). Kalite iyileştirme sürecinde hata türü etkileri analizi (FMEA) ve bir uygulama (Master's thesis, Gaziosmanpaşa Üniversitesi, Sosyal Bilimleri Enstitüsü).
  4. Asadi, F., Phumpho, S., & Pongswatd, S. (2020). Remote monitoring and alert system of HV transformer based on FMEA. Energy Reports, 6, 807-813.
  5. Ceylan, B. O. (2023). Shipboard compressor system risk analysis by using rule-based fuzzy FMEA for preventing major marine accidents. Ocean Engineering, 272, 113888.
  6. Ceylan, B. O., Akyar, D. A., & Celik, M. S. (2023). A novel FMEA approach for risk assessment of air pollution from ships. Marine Policy, 150, 105536.
  7. Chang, C. H., Kontovas, C., Yu, Q., & Yang, Z. (2021). Risk assessment of the operations of maritime autonomous surface ships. Reliability Engineering & System Safety, 207, 107324.
  8. Cicek, K., & Celik, M. (2013). Application of failure modes and effects analysis to main engine crankcase explosion failure on-board ship. Safety science, 51(1), 6-10.

Ayrıntılar

Birincil Dil

İngilizce

Konular

Deniz Mühendisliği

Bölüm

Araştırma Makalesi

Yayımlanma Tarihi

30 Haziran 2023

Gönderilme Tarihi

2 Mayıs 2023

Kabul Tarihi

11 Haziran 2023

Yayımlandığı Sayı

Yıl 2023 Cilt: 3 Sayı: 1

Kaynak Göster

APA
Doganay, B., Çavuşoğlu, B., & Güler, Ç. B. (2023). A STUDY ON MINIMIZING POTENTIAL ACCIDENTS IN SHIP BUNKERING OPERATION THROUGH USE OF FAILURE MODE AND EFFECT ANALYSIS. Journal of Marine and Engineering Technology, 3(1), 1-13. https://doi.org/10.58771/joinmet.1291554
AMA
1.Doganay B, Çavuşoğlu B, Güler ÇB. A STUDY ON MINIMIZING POTENTIAL ACCIDENTS IN SHIP BUNKERING OPERATION THROUGH USE OF FAILURE MODE AND EFFECT ANALYSIS. JOINMET. 2023;3(1):1-13. doi:10.58771/joinmet.1291554
Chicago
Doganay, Begüm, Burak Çavuşoğlu, ve Çağrı Berk Güler. 2023. “A STUDY ON MINIMIZING POTENTIAL ACCIDENTS IN SHIP BUNKERING OPERATION THROUGH USE OF FAILURE MODE AND EFFECT ANALYSIS”. Journal of Marine and Engineering Technology 3 (1): 1-13. https://doi.org/10.58771/joinmet.1291554.
EndNote
Doganay B, Çavuşoğlu B, Güler ÇB (01 Haziran 2023) A STUDY ON MINIMIZING POTENTIAL ACCIDENTS IN SHIP BUNKERING OPERATION THROUGH USE OF FAILURE MODE AND EFFECT ANALYSIS. Journal of Marine and Engineering Technology 3 1 1–13.
IEEE
[1]B. Doganay, B. Çavuşoğlu, ve Ç. B. Güler, “A STUDY ON MINIMIZING POTENTIAL ACCIDENTS IN SHIP BUNKERING OPERATION THROUGH USE OF FAILURE MODE AND EFFECT ANALYSIS”, JOINMET, c. 3, sy 1, ss. 1–13, Haz. 2023, doi: 10.58771/joinmet.1291554.
ISNAD
Doganay, Begüm - Çavuşoğlu, Burak - Güler, Çağrı Berk. “A STUDY ON MINIMIZING POTENTIAL ACCIDENTS IN SHIP BUNKERING OPERATION THROUGH USE OF FAILURE MODE AND EFFECT ANALYSIS”. Journal of Marine and Engineering Technology 3/1 (01 Haziran 2023): 1-13. https://doi.org/10.58771/joinmet.1291554.
JAMA
1.Doganay B, Çavuşoğlu B, Güler ÇB. A STUDY ON MINIMIZING POTENTIAL ACCIDENTS IN SHIP BUNKERING OPERATION THROUGH USE OF FAILURE MODE AND EFFECT ANALYSIS. JOINMET. 2023;3:1–13.
MLA
Doganay, Begüm, vd. “A STUDY ON MINIMIZING POTENTIAL ACCIDENTS IN SHIP BUNKERING OPERATION THROUGH USE OF FAILURE MODE AND EFFECT ANALYSIS”. Journal of Marine and Engineering Technology, c. 3, sy 1, Haziran 2023, ss. 1-13, doi:10.58771/joinmet.1291554.
Vancouver
1.Begüm Doganay, Burak Çavuşoğlu, Çağrı Berk Güler. A STUDY ON MINIMIZING POTENTIAL ACCIDENTS IN SHIP BUNKERING OPERATION THROUGH USE OF FAILURE MODE AND EFFECT ANALYSIS. JOINMET. 01 Haziran 2023;3(1):1-13. doi:10.58771/joinmet.1291554

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