首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >A finite element analysis-computational fluid dynamics coupled analysis on thermal-mechanical fatigue of cylinder head of a turbo-charged diesel engine
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A finite element analysis-computational fluid dynamics coupled analysis on thermal-mechanical fatigue of cylinder head of a turbo-charged diesel engine

机译:有限元分析 - 计算流体动力学耦合分析涡轮充电柴油机汽缸头的热机械疲劳

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摘要

A finite element analysis-computational fluid dynamics coupled analysis on the thermo-mechanical fatigue of cylinder head of a turbo-charged diesel engine was performed, and the complete simulation process is illustrated in this paper. In-cylinder combustion analysis and water jacket coolant flow analysis were conducted to provide heat transfer boundary conditions to the temperature field calculation of the cylinder head. Comparing with the conventional finite element analysis of cylinder head by which the heat transfer boundary conditions of the combustion and coolant sides are estimated, the present method coupled the three-dimensional combustion computational fluid dynamics and coolant computational fluid dynamics with the finite element analysis. Both computational fluid dynamics and finite element analysis obtain more accurate boundary conditions on their interface from each other, and thus, the present method improves accuracy of thermo-mechanical fatigue prediction. Based on the measured material performance parameters such as stress-strain curve under different temperatures and E-N curve, creep, and oxidation data material performance, the cylinder head-gasket-cylinder block finite element transient stress-strain field was calculated using ABAQUS. The thermo-mechanical fatigue analysis of cylinder head submodel was performed by using FEMFAT software that is based on the Sehitoglu model to predict the thermo-mechanical fatigue life of cylinder head. By comparing the measured and predicted temperatures of cylinder head, the temperature results showed a good agreement, and the error is less than 10%.
机译:进行了有限元分析 - 计算流体动力学耦合分析涡轮带柴油发动机的气缸头的热机械疲劳,并在本文中说明了完整的仿真过程。进行缸内燃烧分析和水套冷却剂流量分析以向气缸盖的温度场计算提供传热边界条件。估计燃烧和冷却液侧侧的传热边界条件的圆柱头的传统有限元分析比较,本方法耦合具有有限元分析的三维燃烧计算流体动力学和冷却剂计算流体动力学。计算流体动力学和有限元分析均在其彼此界面上获得更精确的边界条件,因此,本方法提高了热机械疲劳预测的准确性。基于测量的材料性能参数,例如在不同温度和E-N曲线下的应力 - 应变曲线,蠕变和氧化数据材料性能下,使用ABAQU计算气缸盖垫圈 - 圆柱体缸体有限元瞬态应力 - 应变场。通过使用基于Sehitoglu模型的Femfat软件来进行气缸盖子模型的热机械疲劳分析,以预测气缸盖的热机械疲劳寿命。通过比较气缸盖的测量和预测温度,温度结果表明良好的一致性,误差小于10%。

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