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Transient CFD Simulation of Exhaust Gas Recirculation Coolers for Further Structural Analyses

机译:用于进一步结构分析的废气再循环冷却器的瞬态CFD仿真

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Exhaust Gas Recirculation coolers (EGR) have to withstand high thermal stresses due to large temperature gradients between the hot exhaust gas and the coolant. For the conceptual design of non-existing models in the early development phases, a simulation method was developed for the virtual validation of temperature cycle testing. In this work, a conjugate heat transfer analysis of a shell and tube type EGR cooler is carried out using Computational Fluid Dynamics (CFD) and the resulting structural temperatures are subsequently mapped to a Finite Element (FE) model for further structural analysis. This allows a complete and accurate thermal and structural analysis of component designs. The methodology has been developed and validated for temperature cycle loading tests. Experimental and simulation results are in good agreement, thereby allowing the successful virtual design and optimization of EGR coolers.
机译:废气再循环冷却器(EGR)必须承受高热应力,由于热废气和冷却剂之间的较大温度梯度。对于早期开发阶段的非现有模型的概念设计,开发了一种用于温度循环测试的虚拟验证的仿真方法。在这项工作中,使用计算流体动力学(CFD)进行壳体和管型EGR冷却器的共轭传热分析,随后将所得的结构温度映射到有限元(FE)模型以进行进一步的结构分析。这允许组件设计的完整和准确的热和结构分析。该方法已经开发并验证了温度循环加载测试。实验和仿真结果符合良好,从而允许成功的虚拟设计和EGR冷却器的优化。

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