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Simulation of Scavenging in a Small Two-Stroke Gasoline Engine Typical in South Asia

机译:南亚典型小型两冲程汽油发动机扫除的仿真

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Popular and inexpensive, small carbureted two-stroke engines in developing countries dominate city air pollution, mostly with hydrocarbon and particulate/aerosol emissions that short-circuit the scavenge process. Retrofit of a direct fuel-injection system can provide significant emissions reduction, if optimum injection timing is used to promote mixing while avoiding premature fuel loss. This required detailed understanding of the scavenging flow. Computational study of scavenge flow in a typical small vehicle engine is accomplished using multi-dimensional, moving-mesh unsteady and quasi-steady models. Both models indicate that typical multi-port inlet placement and timing allow significant mixture short-circuit, consistent with emissions observations. Residual gas is well scavenged from the hemi-spherical head cylinder. Insights are derived for future incorporation of direct fuel injection for similar engines.
机译:流行廉价的小型碳水化的双中风发动机在发展中国家占据了城市空气污染,主要用碳氢化合物和微粒/气溶胶排放,短路清除过程。如果使用最佳喷射正时,直接燃料喷射系统的改造可以提供显着的排放减少,同时避免过早燃料损失。这需要详细了解清除流量。使用多维,移动网发动机不稳态和准稳态模型完成典型小型车辆发动机中清除流的计算研究。两种模型都表明典型的多端口入口放置和定时允许显着的混合短路,与排放观察一致。残余气体从半球形头筒中扫除。由于未来燃油喷射为类似发动机的未来融入洞察力。

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