흡기다기관의 플레넘 챔버에 따른 흡입 공기량 및 균일 분배율 특성 연구

Hyeon-Su Park, Chul-Ho Kim
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Abstract

In this experiment, the engine (i30 FD) was fabricated and installed in front of the intake manifold of the gasoline engine of the 2010 1,600cc MPI(Multi Point Injection) 4-cylinder 16-valve DOHC(Double Over Head Camshaft) electronic control fuel injection system, and the plenum chamber was 150cc, 300cc, 4. The engine rotation speed was increased from 1000rpm to 3000rpm by 500rpm, and the pressure change and engine volume efficiency change of the air intake manifold runner were analyzed.In this study, the volume of air flowing into the cylinder was maximized through the stabilization of pressure vibration in the intake manifold runner part due to the engine operation condition and the volume change of the intake manifold plenum chamber, and the uniform distribution rate of the intake air was confirmed by minimizing the interference between the cylinders.It has in the purpose to analyze the flow characteristic at the intake manifold inside. It can apply to obtain the optimal design factor.
研究进气歧管内腔吸入空气量及均匀分配率特性
本实验将发动机(i30 FD)制作并安装在2010款1600cc MPI(多点喷射)4缸16气门DOHC(双顶凸轮轴)电控燃油喷射系统的汽油机进气歧管前,充气室分别为150cc、300cc、4。将发动机转速从1000rpm提高500rpm到3000rpm,分析进气歧管流道的压力变化和发动机容积效率变化。在本研究中,通过稳定进气歧管流道部分由于发动机运行工况和进气歧管静压室体积变化所引起的压力振动,使进入气缸的气量达到最大,并通过减小气缸间的干扰来确定进气均匀分布率。对进气歧管内部的流动特性进行了分析。该方法可用于求得最优设计系数。
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