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首页> 外文期刊>International Journal of Automotive Technology >LOW FUEL CONSUMPTION AND LOW EMISSIONS - ELECTROMECHANICAL VALVE TRAIN IN VEHICLE OPERATION
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LOW FUEL CONSUMPTION AND LOW EMISSIONS - ELECTROMECHANICAL VALVE TRAIN IN VEHICLE OPERATION

机译:低燃油消耗和低排放-车辆操作中的机电阀

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The electromechanical valve train (EMV) technology allows for a reduction in fuel consumption while operating under a stoichiometric air-fuel-ratio and preserves the ability to use conventional exhaust gas aftertreatment technology with a 3-way-catalyst. Compared with an engine with a camshaft-driven valve train, the variable valve timing concept makes possible an additional optimization of cold start, warmup and transient operation. In contrast with the conventionally throttled engine, optimized control of load and in-cylinder gas movement can be used for each individual cylinder and engine cycle. A load control strategy using a "Late Intake Valve Open" (LIO) provides a reduction in start-up HC emissions of approximately 60%. Due to reduced wall-wetting, the LIO control strategy improves the transition from start to idle. "Late Exhaust Valve Open" (LEO) timing during the exhaust stroke leads to exhaust gas afterburning and, thereby, results in high exhaust gas temperatures and low HC emissions. Vehicle investigations have demonstrated an improved accuracy of the air-fuel-ratio during transient operation. Results in the New European Driving Cycle have confirmed a reduction in fuel consumption of more than 15% while meeting EURO IV emission limits.
机译:机电气门机构(EMV)技术可在以化学计量空燃比运行的同时减少燃料消耗,并保留了将传统的废气后处理技术与三元催化器一起使用的能力。与带有凸轮轴驱动气门机构的发动机相比,可变气门正时概念使冷启动,预热和瞬态运行的其他优化成为可能。与传统的节气门发动机相比,可以对每个单独的气缸和发动机循环使用优化的负载和缸内气体运动控制。使用“进气门延迟打开”(LIO)的负载控制策略可将启动HC排放量减少约60%。由于减少了壁润湿,LIO控制策略改善了从启动到空闲的过渡。排气冲程中的“排气门延迟打开”(LEO)正时会导致排气再燃烧,从而导致排气温度升高和HC排放量降低。车辆研究表明,瞬态运行期间空燃比的准确性有所提高。新欧洲行驶周期的结果已证实,在达到欧IV排放限值的同时,燃油消耗减少了15%以上。

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