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Development and Application of Ring-Pack Model Integrating Global and Local Processes. Part 1: Gas Pressure and Dynamic Behavior of Piston Ring Pack

机译:环保模型集成全局与本地进程的开发与应用。 第1部分:活塞环包装的气体压力和动力学行为

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A new ring pack model has been developed based on the curved beam finite element method. This paper describes the first part of this model: simulating gas pressure in different regions above piston skirt and ring dynamic behavior of two compression rings and a twin-land oil control ring. The model allows separate grid divisions to resolve ring structure dynamics, local force/pressure generation, and gas pressure distribution. Doing so enables the model to capture both global and local processes at their proper length scales. The effects of bore distortion, piston secondary motion, and groove distortion are considered. Gas flows, gas pressure distribution in the ring pack, and ring structural dynamics are coupled with ring-groove and ring-liner interactions, and an implicit scheme is employed to ensure numerical stability. The model is applied to a passenger car engine to demonstrate its ability to predict global and local effects on ring dynamics and oil transport.
机译:基于弯曲梁有限元方法开发了一种新的环包模型。 本文介绍了该模型的第一部分:模拟了活塞裙上方的不同区域的气体压力,以及两个压缩环的环形动力学行为和双地油控制环。 该模型允许单独的网格部门分解环形结构动力学,局部力/压力产生和气体压力分布。 这样做使模型能够以适当的长度缩放捕获全局和本地进程。 考虑孔失真,活塞二次运动和沟槽变形的影响。 气体流动,环形包装中的气体压力分布,环结构动力学与环形槽和环衬簧相互作用连接,采用隐式方案来确保数值稳定性。 该模型应用于乘用车发动机,以展示其预测环形动力学和石油运输的全球和局部影响的能力。

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