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Design of a Direct Injection Retrofit Kit for Small Two-Stroke Engines

机译:小型两冲程发动机直接注射改装套件的设计

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Carbureted 2-stroke engines are a worldwide pandemic. There are over 50 million 2-stroke cycle engines in Asia alone, powering motorbikes, mopeds, "three-wheelers", "auto-rickshaws", "tuk-tuks", and "tricycles." These carbureted 2-stroke engines are characterized by high levels of hydrocarbon (HC), carbon monoxide (CO), and particulate matter (PM) emissions. Direct injection is a technology that has shown a great ability to reduce these emissions while at the same time improve fuel economy. A prototype kit has been designed for use in retrofitting existing carbureted two-stroke engines to direct injection. The kit was designed for use on a Kawasaki HDIII; a motorcycle from the Philippines that is commonly used as a taxi. It is however, a relatively common engine design and Kawasaki manufactures similar models for sale all over the world. The retrofit kit incorporates the Orbital air blast direct injection system. This injection system has been implemented in Original Equipment Manufacturer (OEM) applications for over six years. The design involved replacing the existing cylinder head with one designed to incorporate the direct injection valves as well as a modified combustion chamber. An external compressor was added to supply compressed air to the system. The carburetor was replaced with a throttle body outfitted with a position indicator, and an encoder system was added to provide speed and position feedback to the engine control unit (ECU). Once design and manufacture of the system was complete, it was installed on the motorcycle. The motorcycle was then mounted in a low inertia eddy current dynamometer test cell for calibration. Calibration was done on the dynamometer for power and engine performance. The system was also tuned in real world road tests for drivability. When calibrations were complete emissions and fuel consumption measurements were taken for the vehicle. The results showed an 88% reduction in hydrocarbon emissions and a 72% reduction in carbon monoxide emissions versus the baseline engine, while at the same time virtually eliminating visible smoke. The retrofitted system also showed a 32% increase in fuel economy, and had similar to better performance than the carbureted engine. The retrofitted system also showed improved cranking and idling characteristics over the carbureted engine.
机译:碳碳酸碳2-钟引擎是全球大流行病。仅在亚洲有超过5000万台行程循环发动机,动力摩托车,摩托车,“三轮车”,“自动人力车”,“Tuk-Tuks”和“三轮车”。这些碳碳酸化2行程引擎的特征在于高水平的烃(HC),一氧化碳(CO)和颗粒物(PM)排放。直接注射是一种技术,它表明了减少这些排放的能力,同时改善燃油经济性。原型套件设计用于改造现有的碳钢的双程发动机以直接注射。该套件设计用于川崎HDIII;菲律宾的摩托车通常用作出租车。然而,它是一个相对普遍的发动机设计和川崎制造了世界各地出售类似的模型。改造套件包括轨道喷射直接注射系统。该注射系统已在原始设备制造商(OEM)应用中实施超过六年。该设计涉及用设计成掺入直接喷射阀以及改进的燃烧室的设计。加入外部压缩机以向系统供应压缩空气。用具有位置指示器的节流阀替换化油器,并加入编码器系统以向发动机控制单元(ECU)提供速度和位置反馈。一旦系统的设计和制造完成,它就安装在摩托车上。然后将摩托车安装在低惯性涡流测力计测试单元中以进行校准。校准是在测功机上进行的电源和发动机性能。该系统还在现实世界道路测试中进行调整,以实现驾驶性能。当校准是完整的排放时,为车辆采取燃料消耗测量。结果表明,烃排放量减少了88%,一氧化碳排放量减少了72%,而基线发动机则几乎消除了可见烟雾。改造的系统还显示出燃料经济性增加32%,并且类似于比碳批发动机更好的性能。改造的系统还显示出碳碳发动机的改善的曲柄和空转特性。

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