首页> 外文会议>SAE World Congress Experience >Potentials of External Exhaust Gas Recirculation and Water Injection for the Improvement in Fuel Economy of a Poppet Valve 2-Stroke Gasoline Engine Equipped with a Two-Stage Serial Charging System
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Potentials of External Exhaust Gas Recirculation and Water Injection for the Improvement in Fuel Economy of a Poppet Valve 2-Stroke Gasoline Engine Equipped with a Two-Stage Serial Charging System

机译:外部废气再循环和注水的潜力,用于提高提升阀2行程汽油发动机的燃料经济性,配备了两阶段串行充电系统

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Engine downsizing is one of the most effective means to improve the fuel economy of spark ignition (SI) gasoline engines because of lower pumping and friction losses. However, the occurrence of knocking combustion or even low-speed pre-ignition at high loads is a severe problem. One solution to significantly increase the upper load range of a 4-stroke gasoline engine is to use 2-stroke cycle due to the double firing frequency at the same engine speed. It was found that a 0.7 L two-cylinder 2-stroke poppet valve gasoline engine equipped with a two-stage serial boosting system, comprising a supercharger and a downstream turbocharger, could replace a 1.6 L naturally aspirated 4-stroke gasoline engine in our previous research, but its fuel economy was close to that of the 4-stroke engine at upper loads due to knocking combustion. Two promising approaches, including external exhaust gas recirculation (eEGR) and water injection (WI), were investigated to improve the fuel economy of the 2-stroke engine by means of a 1-D simulation. Knocking combustion is limited by elongated combustion process and suppressed decomposition of hydrogen peroxide (H_2O_2) into hydroxyl (OH) for eEGR approach, and by decreased in-cylinder temperature for WI approach. The latter approach is more effective for mitigating knocking combustion of the 2-stroke engine than the former approach. Injected water temperature has minor effect on knocking combustion, and its increase could be offset by slightly increased amount of water. Improved fuel economy with increased in-cylinder peak pressure is achieved by increased water quantity, and becomes more obvious at higher compression ratio. The fuel economy of the 2-stroke engine at upper loads is obviously improved at different engine speeds when WI approach is applied to suppress knocking combustion, and it is increased about 20% relative to that of the 4-stroke engine.
机译:发动机缩小化是由于较低的泵送和摩擦损失,提高火花点火(Si)汽油发动机燃料经济性最有效的方法之一。然而,在高负荷下爆震燃烧甚至低速点火的发生是严重的问题。一种显着增加4行程汽油发动机的上部负载范围的解决方案是在相同的发动机速度下使用两冲程循环。发现,配备有两级连续增压系统的0.7升双缸2行提升阀汽油发动机,包括增压器和下游涡轮增压器,可以取代我们之前的1.6L天然吸气的4行程汽油发动机研究,但由于爆震燃烧,其燃油经济性接近4行程发动机的较近载荷。研究了两个有前途的方法,包括外部废气再循环(EEGR)和注水(WI),通过1-D模拟来改善2行程发动机的燃料经济性。爆震燃烧受细长的燃烧过程的限制,并抑制过氧化氢(H_2O_2)的分解成羟基(OH),用于缩放方法,并通过降低Wi方法的缸内温度下降。后一种方法对于减轻2行程发动机的爆震燃烧比以前的方法更有效。注入水温对爆震燃烧产生了微小的影响,并且其增加可能会通过略微增加的水量抵消。通过增加的水量增加,改善了汽缸峰值压力增加的燃料经济性,并且以更高的压缩比变得更加明显。当WI方法应用于抑制爆震燃烧时,上载荷在上载荷的燃料经济性明显改善,而相对于4冲程发动机的速度,在不同的发动机速度下显着提高了不同的发动机速度。

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