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The characteristics of scavenging flow in a poppet-valve type 2-stroke diesel engine by using RSSV system

机译:用RSSV系统通过RSSV系统清扫流动阀门型2行程柴油机的特点

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An optimization study is performed for the scavenging process as the first step for the development of a poppet-valve type automotive two-stroke diesel engine. The scavenging flow pattern is varied by the RSSV (rotatable shrouded scavenging valve) system, which was designed for application of a shroud valve to an actual engine. The scavenging flow is analyzed by flow visualization and numerical calculations under a steady condition. Water is used as the working fluid, instead of air for effective visualization of the flow pattern in the flow visualization study. More details in the scavenging characteristics are observed by a dye experiment, in which the dye path indicates the flow streamline in the cylinder. In the numerical study, three-dimensional flows are calculated by a modified version of KIVA-2 code, with a special technique to consider the valve and shroud shapes. The results show that a large shroud angle generates a center vortex in the cylinder by a strong reverse tumble flow, while a small shroud angle induces short-circuiting by direct flow toward the exhaust valves. The shroud angle between 90 degrees and 120 degrees was found to be the optimal range for effective scavenging.
机译:对清除过程进行了优化研究作为开发提升阀型汽车两冲程柴油发动机的第一步。清除流动图案由RSSV(可旋转罩扫描阀)系统变化,该系统被设计用于将护罩阀施加到实际发动机。通过稳定条件下的流动可视化和数值计算分析清除流程。水用作工作流体,而不是空气,以便在流动可视化研究中有效可视化流动模式。通过染料实验观察清除特征中的更多细节,其中染料路径表示气缸中的流动流线。在数值研究中,三维流由Kiva-2码的修改版本计算,具有一种特殊的技术,以考虑阀门和护罩形状。结果表明,通过强烈的反向滚动流动,大的护罩角在圆筒中产生中心涡流,而小护罩角度通过直接流向排气阀引起短路。发现90度和120度之间的凸起角度是有效清除的最佳范围。

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