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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >An experimental study on the influence of EGR rate and fuel octane number on the combustion characteristics of a CAI two-stroke cycle engine
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An experimental study on the influence of EGR rate and fuel octane number on the combustion characteristics of a CAI two-stroke cycle engine

机译:EGR率和燃料辛烷值对CAI二冲程循环发动机燃烧特性影响的实验研究

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摘要

Having the higher power-to-weight ratio feature of two-stroke cycle engines and higher thermodynamic efficiency of controlled auto-ignition (CAI) combustion proposes a promising concept for future internal combustion engines. The control of start of auto-ignition (CA10) and its cyclic variation are major issues that should be addressed. The research to date has tended to focus on the influence of internal EGR (In-EGR) utilization on the combustion characteristics of CAI two-stroke cycle engine rather than external EGR (Ex-EGR) utilization. This experimental study aims to investigate the influence of Ex-EGR incorporated with In-EGR utilization on the combustion characteristics and the cyclic variability of a single-cylinder CAI two-stroke cycle engine using different fuel octane number (ON). Engine's combustion-related parameters were examined statistically associated with Coefficient of Variation (COV) and Standard Deviation (STD). It is perceived that the significant CAl combustion parameters, including HRR_(max), θ_(HRRmax), LTHR, θ_(LTHR). CA10, CA50, MFB and T_(CA10) are strongly correlated to variation of In/Ex-EGR and fuel ON and they suggest an effective means to control CAI combustion phasing and cyclic variability. Furthermore, CA10 and its cyclic variability exhibited that are more sensitive to altering Ex-EGR compared to altering In-EGR.
机译:具有二冲程循环发动机的更高的功率重量比特性和受控的自动点火(CAI)燃烧的更高的热力学效率为未来的内燃机提出了一个有前途的概念。自燃开始控制(CA10)及其周期性变化是应解决的主要问题。迄今为止,研究倾向于集中在内部EGR(In-EGR)利用率对CAI二冲程循环发动机燃烧特性的影响上,而不是外部EGR(Ex-EGR)利用率上。这项实验研究旨在研究将Ex-EGR与In-EGR结合使用对使用不同燃料辛烷值(ON)的单缸CAI二冲程循环发动机的燃烧特性和循环可变性的影响。统计检查了与发动机燃烧相关的参数与变异系数(COV)和标准偏差(STD)的相关性。可以看出,重要的CAl燃烧参数包括HRR_(max),θ_(HRRmax),LTHR,θ_(LTHR)。 CA10,CA50,MFB和T_(CA10)与In / Ex-EGR和燃料ON的变化密切相关,它们提出了控制CAI燃烧定相和循环变化的有效手段。此外,与改变In-EGR相比,CA10及其循环可变性表现出对改变Ex-EGR更敏感。

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