Acceso abierto

Multi-Symptom Diagnostic Investigation of the Working Process of a Marine Diesel Engine: Case Study Part 1 Measurement Diagnostics

, ,  y   
19 jun 2025

Cite
Descargar portada

Al-Dawody M F, Bhatti S K. Effect of soybean oil biofuel blending on the performance and emissions of Diesel engine using Diesel-RK software. International Journal of Engineering, Science and Technology 3(6), 4539–4553, 2011. ISSN: 0975-5462 Search in Google Scholar

Chouchane M, Ftoutou E. Internal combustion engine valve clearance fault classification using multivariate analysis of variance and discriminant analysis. Transactions of the Institute of Measurement and Control. June 2012. United Kingdom. https://doi.org/10.1177/0142331211408492 Search in Google Scholar

Czichos H. Handbook of technical diagnostics: Fundamentals and application to structures and systems. Springer Science & Business Media; 2013. Search in Google Scholar

Heywood J B. Internal combustion engine fundamentals. 2nd edition, New York, McGraw-Hill Education; 2018. Search in Google Scholar

Karami R, Rasul M G, Masud M, Khan K, Salahi M M, Anwar M. Experimental and computational analysis of combustion characteristics of a diesel engine fueled with diesel-tomato seed oil biodiesel blends. Fuel 285, 119243, 2021. https://doi.org/10.1016/j.fuel.2020.119243. Search in Google Scholar

Korczewski Z. Operational diagnostics of marine combustion engines – Piston and turbine. Selected issues. Gdańsk University of Technology, Publishing House, Gdańsk (in Polish); 2017. Search in Google Scholar

Korczewski Z. Methodology of testing marine fuels in real operating conditions of the compression-ignition engine. Gdańsk University of Technology, Publishing House, Gdańsk (in Polish); 2022. Search in Google Scholar

Lešnik L, Jurij Iljaž J, Hribernik A, Breda Kegl B. Numerical and experimental study of combustion, performance and emission characteristics of a heavy-duty DI diesel engine running on diesel, biodiesel and their blends. Energy Conversion and Management 81, 534–546. https://doi.org/10.1016/j.enconman.2014.02.039 Search in Google Scholar

Lin B, Lin C Y. Compliance with international emission regulations: Reducing the air pollution from merchant vessels. Marine Policy 30(3), 220–225, 2006. Search in Google Scholar

McCrady J P, Hansen A C, Lee C F. Modeling biodiesel combustion using GT-POWER. Conference Paper: Minneapolis, Minnesota, June 17-20, 2007. https://doi.org/10.13031/2013.23435 Search in Google Scholar

Mocerino L, Soares C G, Rizzuto E, Balsamo F, Quaranta F. Validation of an emission model for a marine diesel engine with data from sea operations. Journal of Marine Science and Application 20, 534–545, 2021. https://doi.org/10.1007/s11804-021-00227-w Search in Google Scholar

Minchev D, Varbanets R, Shumylo O, Zalozh V, Aleksandrovska N, Bratchenko P, Truong T H. Digital twin test-bench performance for marine diesel engine applications. Polish Maritime Research 30(4), 81–91, 2023. https://doi.org/10.2478/pomr-2023-0061 Search in Google Scholar

Minchev D, Varbanets R, Aleksandrovskaya N, Pisintsaly L. Marine diesel engines operating cycle simulation for diagnostics issues. Acta Polytechnica 3(61), 428–440, 2021. https://doi.org/10.14311/AP.2021.61.0435 Search in Google Scholar

Neumann S, Varbanets R, Minchev D, Malchevsky V, Zalozh V. Vibrodiagnostics of marine diesel engines in IMES GmbH systems. Ships and Offshore Structures 18(11), 1535–1546, 2023. https://doi.org/10.1080/17445302.2022 Search in Google Scholar

Pham V V. Research on the application of Diesel-RK in the calculation and evaluation of technical and economic criteria of marine diesel engines using the unified ULSD and biodiesel blended fuel. Journal of Mechanical Engineering. Research and Developments 42(2), 87–97, 2019. https://doi.org/10.26480/jmerd.02.2019.87.97 Search in Google Scholar

Polanowski S, Pawletko R, Witkowski K. Influence of pressure sensor location on the quality of thermodynamic parameters calculated from the marine engine indicator diagram. Combustion Engines 154(3), 319–323, 2013. ISSN: 0138-0346 Search in Google Scholar

Puzdrowska P. Evaluation of the influence of the opening pressure of a marine diesel engine injector on the results of numerical simulation of the working cycle and their comparison with the results of the laboratory experiment. Combustion Engines 193(2), 9–14, 2023. https://doi.org/10.19206/ce-155873 Search in Google Scholar

Siddique S K A, Reddy K V K. Theoretical investigation on combustion chamber geometry of DI Diesel engine to improve the performance by using Diesel-RK. International Journal of Innovative Technology and Exploring Engineering 4(10), 25–28, 2015. ISSN: 2278-3075 Search in Google Scholar

Varbanets R, Dmytro Minchev D, Kucherenko Y, Zalozh V, Kyrylash O, Tarasenko T. Methods of real-time parametric diagnostics for marine diesel engines. Polish Maritime Research 31(3), 71–84, 2024. https://doi.org/10.2478/pomr-2024-0037 Search in Google Scholar

Varbanets R, Minchev D, Savelieva I, Rodionov A, Mazur T, Psariuk S, Bondarenko V. Advanced marine diesel engines diagnostics for IMO decarbonization compliance. AIP Conference Proceedings: Transport, Ecology, Sustainable Development: Eko Varna, 2024. https://doi.org/10.1063/5.0198828 Search in Google Scholar

Vural E, Şimşek D, Özer S. The analysis of the effect of diesel fuel additive 5%, compression ratio and injection pressure on the performance with Diesel-RK programme. International Conference on Natural Science and Engineering (ICNASE’16) 3(1) 2017), 1593–1599. IJARIIE-ISSN(O)-2395-4396 Search in Google Scholar

Wankhede A. Understanding indicator diagram and different types of indicator diagram deficiencies. Main Engine. 2021. Retrieved from https://www.marineinsight.com/main-engine. Search in Google Scholar

Tharanga K, Liu S, Zhang S, Wang Y. Diesel engine fault diagnosis with vibration signal. Journal of Applied Mathematics and Physics 8(9), 2031–2042, 2020. https://doi.org/10.4236/jamp.2020.89151 Search in Google Scholar

MARPOL 73/78 Convention, Annex VI: Regulations for the prevention of air pollution from ships (entered into force on 19 May 2005). Search in Google Scholar

Revised GHG reduction strategy for global shipping adopted. London, International Maritime Organization; 2024. Search in Google Scholar

Guidelines on life cycle GHG intensity of marine fuels (LCA Guidelines). London, International Maritime Organization; 2024. Search in Google Scholar

Navigating New Regulations: MEPC’s Commitment to Cleaner Marine Diesel Engines. Retrieved from https://www.marineregulations.news/mepc-marine-diesel-engine-regulations/ Search in Google Scholar

Marine Environment Protection Committee (MEPC 80), 3–7 July 2023. London, International Maritime Organization. Search in Google Scholar

Lehmann & Michels GmbH. PREMET® C indicator. Retrieved from https://www.lemag.de/ Search in Google Scholar

KIGAZ 300 PRO combustion gas analyser. Retrieved from https://www.kimoinstruments.com Search in Google Scholar

Blitz-PRO by D S Minchev. User’s manual. Retrieved from http://blitzpro.zeddmalam.com/application/index/signin Search in Google Scholar