首页> 外文会议>SAE World Congress Exhibition >Indicated Cycle Efficiency Improvements of a 4-Stroke, High Compression Ratio, S.I., Opposed-Piston, Sleeve-Valve Engine Using Highly Delayed Spark Timing for Knock Mitigation
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Indicated Cycle Efficiency Improvements of a 4-Stroke, High Compression Ratio, S.I., Opposed-Piston, Sleeve-Valve Engine Using Highly Delayed Spark Timing for Knock Mitigation

机译:指示4行程,高压缩比,S.I.,相对的活塞,套筒 - 阀发动机的循环效率改进,使用高度延迟的火花正时进行击退缓解

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A fixed-geometry configuration of Pinnacle Engines' 4-stroke spark-ignited 250 cc single-cylinder opposed-piston reciprocating sleeve-valve engine is presented. A test cell has been developed with a custom crank-angle based data acquisition system to allow friction testing and indicated cycle development. Incipient knock criteria are defined and test results are presented to compare the opposed-piston's indicated cycle performance to conventional single-cylinder engines. At high loads, the Pinnacle opposed-piston engine utilizes the Cleeves cycle, an operating mode in which spark timing is highly delayed from best power spark advance, to enable knock-free operation at an elevated 15:1 compression ratio using 87 octane fuel. Data is presented for sleeve-valve operating temperatures, peak cylinder pressure effects, and exhaust gas temperatures. LogP-logV plots at key drive-cycle operating conditions highlight indicated cycle advantages of the opposed-piston sleeve-valve engine over two configurations of a comparison poppet-valve engine. Data is presented to show that extended lean operating limits enable reduced drive-cycle emissions in the target vehicle. Indicated cycle performance using gaseous CNG/methane is also presented. The engine has been developed such that, with the most basic configuration, light-load indicated efficiency improvements of 15-30% can be realized over conventional poppet-valve technology.
机译:Pinnacle发动机的固定几何构造的4行程火花点火250 CC单缸逆套筒阀发动机。已经使用基于定制曲柄角的数据采集系统开发了测试单元,以允许摩擦测试和指示的循环开发。定义初期爆震标准,并提出了测试结果以将对抗活塞的指示循环性能与传统的单缸发动机进行比较。在高负载下,Pinnacle对抗活塞发动机利用夹缝循环,其中火花正时从最佳功率提前延迟的操作模式,以使用87辛烷燃料在升高的15:1压缩比下实现无敲敲的操作。提供数据,用于套筒 - 阀门工作温度,峰值气缸压力效应和废气温度。 LOGP-LOGV图在关键驱动周期运行条件下突出显示指示的循环套筒在比较提升阀发动机的两种配置中的相对活塞套筒阀发动机的优势。提出了数据以表明扩展的瘦操作限制能够降低目标车辆中的驱动循环排放。还提出了使用气体CNG /甲烷的指示循环性能。发动机已经开发,使得具有最基本的配置,在传统的提升阀技术上,可以实现15-30%的光负荷所示的效率提高。

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