首页> 外文期刊>JSME International Journal. Series B, Fluids and Thermal Engineering >Effect of Sulfur Dioxide in Recirculated Exhaust Gas on Wear within Diesel Engines (Relationship between Wear and Amount of SO_2 Absorbed by Lubricating Oil Film)
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Effect of Sulfur Dioxide in Recirculated Exhaust Gas on Wear within Diesel Engines (Relationship between Wear and Amount of SO_2 Absorbed by Lubricating Oil Film)

机译:再循环废气中二氧化硫对柴油机磨损的影响(磨损与润滑油膜吸收的SO_2量之间的关系)

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摘要

In both spark ignition engines and diesel engines, exhaust gas recirculation (EGR) is well known as an effective technique to reduce emissions of nitrogen oxides. However, it has not yet been applied practically to heavy-duty diesel engines because the wear on piston rings and cylinder liners is increased by EGR. It is widely accepted that sulfur dioxide in burnt gas is strongly related to this wear increase. This paper proposes a numerical model to clarify the mechanism of wear which estimates the amount of sulfur dioxide absorbed by lubricating oil film. The calculated results show that the concentration of sulfur dioxide in lubricating oil film is increased with the increase in the rate of EGR and the reduction in engine speed, and is decreased with the decrease in engine load. The measured amount of wear on piston rings and cylinder liners is related to the concentration of sulfur dioxide in lubricating oil film.
机译:在火花点火发动机和柴油发动机中,众所周知,废气再循环(EGR)是减少氮氧化物排放的有效技术。但是,由于EGR会增加活塞环和气缸套的磨损,因此尚未真正应用于重型柴油发动机。燃烧气体中的二氧化硫与这种磨损增加密切相关,这一点已被广泛接受。本文提出了一个数值模型来阐明磨损机理,该机理估算了润滑油膜吸收的二氧化硫的量。计算结果表明,润滑油膜中的二氧化硫浓度随着EGR率的增加和发动机转速的降低而增加,而随着发动机负荷的降低而降低。测得的活塞环和气缸套的磨损量与润滑油膜中二氧化硫的浓度有关。

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