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Mathematical modeling of reed valve behavior in high-speed, two-stroke engines

机译:高速,两冲程发动机簧片阀行为的数学建模

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Reed valves are the most common method used to control the intake of fresh air and fuel into the crankcase of a high-performance, two-stroke engine. While they can be quite simple in terms of mechanical design, their operation is highly dynamic and can be influenced by many other components. Previous publications from The Queen's University of Belfast have shown the derivation of mathematical models and their verification by measurements from a firing engine at relatively high engine speeds, up to 9,500 rev/min. In this present paper, measured and predicted data for delivery ratio and reed tip lift are presented for a 125 cm{sup}3, single-cylinder engine over a range of speeds up to 12,290 rev/min. Steady flow discharge coefficients are measured and used in the mathematical simulation. Four variations of reed valve material/thickness are investigated in the firing engine. Correlation between measured and predicted delivery ratio is good over the speed range and various reed specifications. Correlation for reed tip lift behavior is reasonably good, considering the highly dynamic operating conditions. Overall, the enhanced simulation model can be used to determine an optimized reed specification with a high level of confidence.
机译:簧片阀门是最常用的方法,用于控制新鲜空气和燃料进入高性能,双冲程发动机的曲轴箱中的摄入量。虽然它们在机械设计方面非常简单,但它们的操作是高度动态的,并且可能受到许多其他组件的影响。女王贝尔法斯大学的上一篇出版物表明了数学模型的推导,并通过在相对高的发动机速度下测量来验证,最高可达9,500次/分钟。在本文中,用于输送比和簧片尖端升降机的测量和预测数据以125cm {sup} 3,单缸发动机在一定速度范围内呈现125cm {sup} 3,在一定范围内为12,290 rev / min。测量稳定的流量放电系数并用于数学模拟。在烧制发动机中研究了簧片阀门材料/厚度的四个变化。测量和预测的交付比之间的相关性在速度范围和各种簧片规格方面是良好的。考虑到高度动态的操作条件,簧片尖端升降行为的相关性相当好。总的来说,增强型仿真模型可用于确定具有高度置信度的优化的簧片规范。

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