Health Monitoring of a Compression Ignition Engine Fed with Different Low-Sulphur Marine Fuels by Endoscopic Image Processing and Analysis

IF 2 3区 工程技术 Q2 ENGINEERING, MARINE Polish Maritime Research Pub Date : 2023-06-01 DOI:10.2478/pomr-2023-0024
Z. Korczewski
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引用次数: 1

Abstract

Abstract This article characterises the methodology for the endoscopic testing of a laboratory diesel engine used for testing marine fuels. The ‘Shadow’ measurement method used in the XLG3 type EVEREST digital endoscope, for quantitative and qualitative identification of detected surface defects, was approximated. Representative endoscopic images of the elements limiting the working space of the research engine are demonstrated, having been recorded during the usable quality testing of newly produced, low-sulphur marine fuels, so-called ‘modified fuels’. The main purpose of the endoscopic examinations was the final verification of the tested fuel’s suitability for feeding full-size marine engines.
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应用内窥镜图像处理与分析对不同低硫船用燃料压燃式发动机的健康监测
摘要本文介绍了用于测试船用燃料的实验室柴油发动机的内窥镜测试方法。XLG3型EVEEST数字内窥镜中使用的“阴影”测量方法,用于定量和定性识别检测到的表面缺陷,是近似的。展示了限制研究发动机工作空间的元素的代表性内窥镜图像,这些图像是在新生产的低硫船用燃料(即所谓的“改良燃料”)的可用质量测试期间记录的。内窥镜检查的主要目的是最终验证测试燃料是否适合为全尺寸船用发动机供油。
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来源期刊
Polish Maritime Research
Polish Maritime Research 工程技术-工程:海洋
CiteScore
3.70
自引率
45.00%
发文量
20
审稿时长
>12 weeks
期刊介绍: The scope of the journal covers selected issues related to all phases of product lifecycle and corresponding technologies for offshore floating and fixed structures and their components. All researchers are invited to submit their original papers for peer review and publications related to methods of the design; production and manufacturing; maintenance and operational processes of such technical items as: all types of vessels and their equipment, fixed and floating offshore units and their components, autonomous underwater vehicle (AUV) and remotely operated vehicle (ROV). We welcome submissions from these fields in the following technical topics: ship hydrodynamics: buoyancy and stability; ship resistance and propulsion, etc., structural integrity of ship and offshore unit structures: materials; welding; fatigue and fracture, etc., marine equipment: ship and offshore unit power plants: overboarding equipment; etc.
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