首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >EFFECT OF PISTON CREVICES ON 3D SIMULATION OF A HEAVY-DUTY DIESEL ENGINE RETROFITTED TO NATURAL GAS SPARK IGNITION
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EFFECT OF PISTON CREVICES ON 3D SIMULATION OF A HEAVY-DUTY DIESEL ENGINE RETROFITTED TO NATURAL GAS SPARK IGNITION

机译:活塞裂缝对自然燃气火花点火重型柴油机3D模拟的影响

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3D CFD IC engine simulations that use a simplified combustion model based on the flamelets concept can provide acceptable results with minimum computational costs and reasonable running times. More, the simulation can neglect small combustion chamber details such as valve crevices, valve recesses and piston crevices volume. The missing volumes are usually compensated by changes in the squish volume (i.e., by increasing the clearance height of the model compared to the real engine). This paper documents some of the effects that such an approach would have on the simulated results of the combustion phenomena inside a conventional heavy-duty direct-injection CI engine, which was converted to port-fuel injection SI operation. 3D IC engine simulations with or without crevice volumes were run using the G-equation combustion model. A proper parameter choice ensured that the simulation results agreed well with the experimental pressure trace. The results show that including the crevice volume affected the mass of unburned mixture inside the squish region, which in turn influenced the flame behavior and heat release during late-combustion stages.
机译:3D CFD IC发动机模拟,使用基于Flamelets Concept的简化燃烧模型可以提供最小的计算成本和合理运行时间的可接受的结果。更多,仿真可以忽略小燃烧室细节,例如阀缝,阀凹槽和活塞裂缝体积。缺失的体积通常通过鳞片体积的变化来补偿(即,通过增加模型的间隙高度与实际发动机相比)。本文记录了这种方法对传统重型直喷Ci发动机内部燃烧现象的模拟结果的一些效果,该燃烧现象的模拟结果被转换为端口燃料喷射Si操作。使用G-arequation Combustion模型运行3D IC发动机模拟或没有缝隙卷。适当的参数选择确保仿真结果与实验压力迹线很好。结果表明,包括缝隙体积影响鳞状区域内未燃烧的混合物的质量,这反过来影响了后燃阶段期间的火焰行为和热释放。

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