Optimization of direct injection mixture formation for dual-fuel low speed marine engine using novel compound electric gas injection devices

IF 2.2 4区 工程技术 Q2 ENGINEERING, MECHANICAL
Xinyu Fan, Quanshui Huang, Hongyan Pang
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引用次数: 0

Abstract

For two-stroke low speed marine engines, using a natural gas-diesel dual-fuel mode can effectively reduce emissions such as NO X , SO X , and CO 2 , making it an important approach to promote the low-carbon and environmentally friendly development of the shipping industry. To address the issues of abnormal combustion and gas leakage faced by low-pressure gas direct injection, a novel compound electric gas injection device is proposed, which is designed with a coaxial arrangement of a moving coil actuator and a moving iron actuator. Based on this new device, a three-dimensional computational fluid dynamics (CFD) model of the low speed marine engine operating process is established to simulate the distribution characteristics of the in-cylinder flow field under 16 different scenarios, including different injection side-slip angles and lower deflection angles, and to clarify the impact of these factors on the formation, diffusion, and evolution of the mixture. Based on this, an evaluation system was established from two dimensions: mixture uniformity and gas leakage rate. An improved multi-attribute decision-making TOPSIS algorithm based on the entropy weight method was used to define the attribute importance using information entropy, and to construct an optimization evaluation model for the spatial arrangement of the injection device. The optimal arrangement angle was calculated, in which a side-slip angle was 20° and a lower deflection angle was 10°. This method avoids the problem of unreasonable decisions caused by subjective factors such as designer preferences and experience, effectively improving the in-cylinder mixture uniformity and reducing gas leakage rate.
采用新型复合电燃气喷射装置优化双燃料低速船用发动机直喷混合气形成
对于二冲程低速船用发动机而言,采用天然气-柴油双燃料模式可以有效减少nox、SO X、CO 2等排放,是推动航运业低碳环保发展的重要途径。针对低压燃气直喷面临的燃烧异常和漏气问题,提出了一种新型的复合电燃气喷射装置,该装置采用动线圈作动器和动铁作动器同轴布置。基于该装置,建立了低速船用发动机工作过程的三维计算流体动力学(CFD)模型,模拟了不同喷射侧滑移角和低偏转角16种不同工况下缸内流场的分布特征,阐明了这些因素对混合气形成、扩散和演化的影响。在此基础上,从混合均匀性和气体泄漏率两个维度建立了评价体系。采用改进的基于熵权法的多属性决策TOPSIS算法,利用信息熵定义属性重要度,构建了注射装置空间布置的优化评价模型。计算了最佳布置角度,其中侧滑角为20°,下偏转角为10°。该方法避免了由于设计者偏好、经验等主观因素造成的不合理决策问题,有效提高了缸内混合气均匀性,降低了漏气率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
International Journal of Engine Research
International Journal of Engine Research 工程技术-工程:机械
CiteScore
6.50
自引率
16.00%
发文量
130
审稿时长
>12 weeks
期刊介绍: The International Journal of Engine Research publishes high quality papers on experimental and analytical studies of engine technology.
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