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Fueling an Engine by Ultrasonic Atomization, and Its Control

机译:通过超声雾化加油发动机及其控制

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This article presents work carried out on a small, 4-stroke, SI engine, incorporated with an ultrasonic atomizer-based fueling system. A disc-type ultrasonic atomizer having good atomization characteristics was incorporated in the air intake path of a single cylinder, two-wheeler engine, replacing the conventional carburetor. This new fueling system was introduced with the aim of reducing the engine fuel consumption, while looking for a possible reduction in exhaust emissions. An electronic control mechanism was devised to change the atomization rate, in order to set the desired equivalence ratio for optimum engine operation. Test results indicate a significant improvement in fuel consumption and brake thermal efficiency, with a good control over the equivalence ratio. The system also allows engine operation at equivalence ratios as low as 0.5, and hence could be adopted for ultra-lean engines. This atomizer fueling system allows the use of closed loop lambda control which is required for meeting stringent automotive emission norms.
机译:本文介绍了与基于超声雾化器的加油系统的小型4行程SI发动机进行的工作。圆盘式超声雾化器具有良好的雾化特性,并入在单个圆筒,两轮车发动机的进气路径中,取代传统化油器。引入了这种新的加油系统,目的是降低发动机燃料消耗,同时寻找排气排放的可能减少。设计了一种电子控制机构以改变雾化速率,以便设定最佳发动机操作的期望的等效比。测试结果表明燃料消耗和制动热效率的显着提高,对等效率良好的控制。该系统还允许在等效比的发动机操作低至0.5,因此可以采用超瘦发动机采用。该雾化器燃料系统允许使用闭环Lambda控制,这是满足严格的汽车排放规范所必需的。

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