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Hydrogen-natural gas combustion in a marine lean-burn SI engine: A comparitive analysis of Seiliger and double Wiebe function-based zero-dimensional modelling

机译:船用稀薄燃烧SI发动机中的氢气燃烧:基于Seiliger和双重Wiebe函数的零维模型的比较分析

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With increasingly stringent emission regulations, marine natural gas engines need to improve their performance. Various proven advantages of hydrogen-natural gas (H-NG) blends make them a promising enhanced fuel solution. Although modelling of H-NG combustion has been investigated before, mostly using CFD models, the literature on the modelling capabilities of Seiliger-based and Wiebe-based zero-dimensional (0-D) models is limited for H-NG combustion. Especially for the application of marine lean-burn spark-ignited (SI) engines. Therefore, the aim of this paper is to compare the capabilities of Seiliger-based and double Wiebe function-based 0-D models to capture H-NG combustion in a marine SI engine for different H-NG fuel blends, engine leaning (lean-burn operation) and engine loads.In this work, measurements on a turbocharged, SI marine natural gas engine were used to develop a heat release rate model, which was subsequently used as a basis for the Seiliger and double Wiebe function-based H-NG combustion characterization models. Results from the two combustion modelling approaches were compared for different H-NG fuel blends, engine leaning (lean-burn operation) and engine loads. The modelling results were also compared against engine measurements for different experimental conditions.This paper shows that the Seiliger modelling approach can be used to define different physical phenomenon in H-NG combustion, while accurately capturing the effects of hydrogen addition and engine leaning on the H-NG combustion process at varying engine loads. This research also found that the variations in late burn phase present in lean-burn NG and H-NG combustion can be captured using the double-Wiebe modelling approach, however, clear trends of the Wiebe combustion parameters for varying fuel blends and engine loads could not be identified to accurately capture the H-NG combustion process. Furthermore, Wiebe-based modelling approach produced larger errors in the estimations of work output and combustion heat for all test conditions.
机译:随着日益严格的排放法规,船用天然气发动机需要提高其性能。氢-天然气(H-NG)混合物的各种已证明的优点使它们成为有前途的增强燃料解决方案。尽管以前已经研究过H-NG燃烧的模型,但大多使用CFD模型进行研究,但基于Seiliger和Wiebe的零维(0-D)模型的建模能力的文献对于H-NG燃烧是有限的。尤其适用于船用稀燃火花点火(SI)发动机。因此,本文的目的是比较基于Seiliger和基于双重Wiebe函数的0-D模型在船用SI发动机中捕获H-NG燃烧的能力,以用于不同的H-NG燃料混合物,发动机倾斜(稀在这项工作中,通过对涡轮增压SI船用天然气发动机的测量来建立放热率模型,该模型随后被用作基于Seiliger和基于Wiebe双功能的H-NG的基础燃烧表征模型。针对两种不同的H-NG混合燃料,发动机倾斜(稀薄燃烧操作)和发动机负载,比较了两种燃烧建模方法的结果。并在不同的实验条件下将建模结果与发动机测量结果进行了比较。 -NG在不同的发动机负载下燃烧过程。这项研究还发现,使用双Wiebe建模方法可以捕获稀燃NG和H-NG燃烧中后期燃烧阶段的变化,但是,对于不同的混合燃料和发动机负载,Wiebe燃烧参数的明显趋势可以无法识别以准确捕获H-NG燃烧过程。此外,基于Wiebe的建模方法在所有测试条件下的功输出和燃烧热的估算中都产生了较大的误差。

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