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Development of an NO_x Reduction System Using Exhaust Valve Controls in Small Engines for Motorcycles

机译:摩托车小型发动机排气阀控制的NO_X减少系统的开发

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Exhaust gas recirculation (EGR) systems are used as a technology to reduce NO_x emissions. However, the charging of the fresh air-fuel mixture decreases due to the inflow of the burnt gas from the EGR system, and the driveability deteriorates. Therefore, an internal EGR system that uses the thermal energy of the burnt gas is generally designed. Such a system employs a variable valve timing mechanism using the hydraulic or the electromagnetic to reduce the exhaust emissions and the fuel consumption and to obtain favorable driveability, generally. However, because such a system is expensive, there are few small motorcycles with the internal EGR system. In the present study, the developed internal EGR system that slightly opens the exhaust valve at the beginning of the compression stroke or the end of the intake stroke has been designed. With this opening and closing timing, the charging rate of fresh air-fuel mixture decreases very little because the intake stroke nearly completes. Enough burnt gas to decrease NO_x emissions flows into the cylinder because the in-cylinder pressure is negative, and the air-fuel mixture in the cylinder is activated by increasing the temperature in the cylinder at the beginning of compression due to the thermal energy of the burnt gas. Therefore, this system does not need a variable valve timing mechanism; the EGR cam is arranged on the same shaft as the exhaust camshaft, and is operated by a solenoid. As a result, NO_x emissions have been decreased by 50%, while providing favorable driveability. Moreover, a reduction in fuel consumption has been enabled by increasing of the air-fuel ratio since NO_x emissions have been reduced significantly.
机译:废气再循环(EGR)系统用作减少NO_X排放的技术。然而,新鲜空气燃料混合物的充电由于来自EGR系统的燃烧气体的流入而降低,并且驱动性劣化。因此,通常设计使用燃烧气体的热能的内部EGR系统。这种系统采用可变气门正时机构,使用液压或电磁以减少排气排放和燃料消耗,并获得良好的可驱动性。但是,由于这样的系统是昂贵的,因为内部EGR系统很少有小摩托车。在本研究中,设计了开发的内部EGR系统,其略微打开压缩行程开始或进气冲程的末端。利用这种打开和关闭时序,新鲜空气 - 燃料混合物的充电率很少降低,因为进气冲程几乎完成。足够的烧伤气体来减少NO_X排放进入圆柱体,因为缸内压力为负,并且通过增加由于热能而增加了压缩开始时气缸中的温度来激活气缸中的空气燃料混合物。烧伤气体。因此,该系统不需要可变气门正时机构; EGR凸轮设置在与排气凸轮轴相同的轴上,并由螺线管操作。因此,NO_X排放量减少了50%,同时提供有利的可驱动性。此外,由于NO_X排放量显着降低,因此通过增加空燃比已经实现了燃料消耗的降低。

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