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Thermal Map of an Exhaust Manifold for a Transient Dyno Test Schedule: Development and Test Data Correlation

机译:用于瞬态DYNO测试计划的排气歧管的热贴图:开发和测试数据相关性

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In an Internal Combustion (IC) Engine, the exhaust manifold has the primary function of channeling products of combustion from cylinder head runners to the emissions system through a collector. Exhaust manifolds must endure severe thermal loads and high strain caused by channeling extremely hot gases and fastener loads, respectively. The combination of these two loads can lead to Thermomechanical Fatigue (TMF) failures after repeated operational cycles if they are not assessed and addressed adequately during the design process. Therefore, it is vital to have a methodology in place to evaluate the life of an engine component (such as the exhaust manifold) using a TMF damage prediction model. To accomplish this, spatial temperature prediction and maximum value attained, as well as temporal distribution, are the most important input conditions. The aim of this work is to generate the transient thermal field in the exhaust manifold and other metal components of an IC engine during a typical thermal fatigue test schedule, using commercial Computational Fluid Dynamics (CFD) tools. A time-based interpolation scheme was used to adjust convective conditions as the engine alternates between high and low operating loads during this test schedule. Finally, metal skin temperatures recorded at thermocouple locations were compared with those from dyno test and good correlation (within 5%) was observed. The usage of this methodology leads to reduction of expensive dyno tests, and at the same time, shortening of exhaust manifold design and development time. The data obtained aid in the prediction of TMF induced failure of components (such as the exhaust manifold) subjected to severe thermal cycling. Calculation of life assessments using TMF damage models are covered in a separate paper.
机译:在内燃(IC)发动机,排气歧管具有通过集电极窜从气缸盖跑步者的排放系统的燃烧产物的主要功能。排气歧管必须忍受引起窜分别极热气体和紧固件负载,严重的热负荷和高应变。这两个负载的组合可导致热机械疲劳(TMF)重复操作周期之后的故障,如果他们不评估,并在设计过程中充分解决。因此,至关重要的是采用TMF损坏预测模型,有一个适当的方法来评估发动机部件的寿命(例如排气歧管)。为了实现这一点,空间温度预测和达到最大值,以及时间分布,是最重要的输入条件。这个工作的目的是一个典型的热疲劳试验调度期间产生在IC发动机的排气歧管和其他金属组分的瞬态热场,使用商用计算流体动力学(CFD)的工具。基于时间的内插方案,使用该试验时间表期间调整对流条件高和低工作负荷之间的发动机交替。最后,记录在热电偶位置金属皮肤温度与那些从DYNO测试和良好的相关性(在5%以内)观察进行比较。这种方法导致的减少昂贵的赛道测试中的使用,并在同一时间,缩短排气歧管设计和开发时间。在经受严酷的热循环的部件(如排气歧管)的TMF引起的故障的预测中的数据获得的援助。使用TMF损伤模型寿命评估计算覆盖在一个单独的文件。

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