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A one-dimensional model for the motor oil-fuel dilution under gasoline engine boundary conditions

机译:汽油发动机边界条件下电动机油燃料稀释的一维模型

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摘要

Nowadays the climate change caused by the green-house effect increasing is a world-wide issue with which scientists have to face. Being the passenger vehicles filled with fossil fuels, the emission of the carbon dioxide green-house gas is unavoidable. In order to slowdown both the global warming and the fossil fuels wasting, lower fuel consumptions, thus high efficiency engines, are required. Currently, the coupled use of downsizing and direct injection in spark ignited engines meets both high efficiency and power-demand requirements. Being downsized engines more compact, the distance between the injector and the engine walls are shorter. Thus, depending on the engine operating condition, the fuel spray wall impingement may occur leading to the formation of a liquid fuel film. If the wall impingement occurs against the cylinder liner wall, which is wetted by a thin oil layer, the motor oil and the landed fuel dilute until the piston arrival. At this time, the mass transport by diffusion have promoted the creation of an oil-fuel mixture. Thus, while thicker part of the mixture layer is scraped into the piston top land crevice, the thinner, whose properties are degraded by the fuel contamination, remains on the cylinder liner. The mixture accumulated inside the crevice may be scattered due to the piston inertia leading to the oil detachment and transport in the combustion chamber. The latter may cause both abnormal combustions named preignitions at high loads and increased particulate emissions at low loads, cold states, and cat-heating. This paper reports the implementation of a onedimensional numerical model for the dilution between fuel and motor oil in a stroke of a gasoline engine. The model aims to give the composition of the oil-fuel mixture both on the cylinder liner after the piston arrival and in the piston top land crevice.
机译:如今,由绿房间效果造成的气候变化越来越多是一个世界范围的问题,科学家必须面对。作为填充化石燃料的乘用车,二氧化碳绿房气体的排放是不可避免的。为了放缓全球变暖和化石燃料浪费,需要较低的燃料消耗,从而需要高效发动机。目前,在火花点火发动机中的耦合使用缩小和直接喷射符合高效率和功率需求要求。被缩小的发动机更紧凑,喷射器和发动机壁之间的距离更短。因此,根据发动机操作条件,可能发生燃料喷射壁冲击导致液体燃料膜的形成。如果墙壁冲击发生在汽缸衬套壁上,其被薄油层润湿,电动机油和降落的燃料稀释,直到活塞到达。此时,通过扩散的质量传输促进了产生油燃料混合物的产生。因此,虽然混合物层的较厚部分刮到活塞顶部缝隙中,但是较薄的,其性质通过燃料污染降低,而诸如燃料污染的性质留在汽缸衬里上。由于活塞惯性导致油脱离和燃烧室中的输送,芯内积聚的混合物可以散射。后者可能导致在高负荷下指示的异常燃烧,并且在低负荷,冷态和猫加热时增加颗粒排放。本文报道了在汽油发动机行程中燃料和机油之间稀释的稀释数值数值模型的实施。该模型旨在在活塞到达后和活塞顶部碎片碎片后,在气缸衬里和活塞顶部碎片缝上的组成中给予油脂混合物的组成。

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