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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >A Parametric study on the lean misfiring and knocking Limits of Gas-fueled spark ignition engines
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A Parametric study on the lean misfiring and knocking Limits of Gas-fueled spark ignition engines

机译:燃气火花点火发动机稀薄失火和爆震极限的参数研究

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摘要

Increasing emphasis on gaseous fuels as clean, economical and abundant fuels encourages the search for optimum operating conditions of gas-fueled internal combustion engines. In this context, this paper presents the experimental results of a parametric study on the lean operational limits of a Ricardo E6 engine using propane and liquefied petroleum gas (LPG) as fuels. Three different criteria for defining the engine lean limit are used. The first is associated with the first detectable misfire on leaning the mixture, the second is the detectable firing under motoring conditions when the mixture is being enriched slowly, while the third is when the torque reaches zero on leaning the mixture. In addition, the lean knocking limit for some experiments is presented. The effects of speed. spark timing, compression ratio, intake temperature, intake pressure (supercharging), and relative humidity off intake air on the engine operational limits are presented and discussed in relation to chemical reaction rates, ignition delay, amount of residual gases, turbulence, and heat transfer.
机译:越来越强调将气体燃料作为清洁,经济和丰富的燃料,这鼓励人们寻找以气体为燃料的内燃机的最佳运行条件。在这种情况下,本文介绍了以丙烷和液化石油气(LPG)为燃料的Ricardo E6发动机的稀薄运行极限的参数化研究的实验结果。使用了三种不同的标准来定义发动机稀薄极限。第一个与倾斜混合物时的第一个可检测到的失火有关,第二个与混合气缓慢富集时在驾驶条件下可检测到的点火有关,第三个与倾斜混合物时扭矩达到零时相关。此外,提出了一些实验的稀燃爆震极限。速度的影响。提出并讨论了火花正时,压缩比,进气温度,进气压力(增压)以及进气在发动机运行极限上的相对湿度,并与化学反应速率,点火延迟,残留气体量,湍流和热传递有关。

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