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Condensation Analysis of Exhaust Gas Recirculation System for Heavy-Duty Trucks

机译:重型卡车废气再循环系统的凝结分析

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The exhaust gas recirculation (EGR) system has been widely used in the automotive and heavy-duty trucks to reduce NO_x, SO_x, and other controlled emissions. A liquid-cooled or air-cooled heat exchanger is the main constituent of the EGR system. The heat exchanger decreases the temperature of the exhaust gases mixture that flows through the EGR channels and the lower temperatures reduce the content of the controlled gas emissions. Condensation of water vapor is an undesirable by-product of the EGR systems because, in combination with the emission gases, it forms the corrosive sulfuric and nitric acids. The U.S. EPA has suggested that engine makers should turn off their EGR systems periodically to avoid the formation of the corrosive sulfuric and nitric acids, In order to accurately predict the corrosion process, a condensation model has been developed to investigate the rates of formation and diffusion of nitric acid and sulfuric acid to the cold tube surface. A three-dimensional computational fluid dynamics (CFD) simulation has been conducted for a typical EGR cooler during normal operating conditions of Tier 4 heavy-duty trucks. A lumped, 1D heat and mass transfer model has also been developed to study the most important physical aspects of the condensation process. The CFD and the analytical results of the rate of condensation and local fluid properties are an important and inexpensive complement to more expensive experimental measurements and testing. Such models may be used to improve the design and to optimize the operating conditions of the EGR systems and may become valuable tools in the design and manufacturing of the next generation of EGR systems for diesel engines, The model developed is general and the techniques and numerical results of this study may be extended to engine reliability, corrosion reduction, and damage prevention of other industrial engines.
机译:废气再循环(EGR)系统已广泛应用于汽车和重型卡车,以减少NO_X,SO_X和其他受控排放。液体冷却或空气冷却的热交换器是EGR系统的主要组成部分。热交换器降低流过EGR通道的废气混合物的温度,并且较低温度降低了受控气体排放的含量。水蒸气的冷凝是EGR系统的不希望的副产物,因为与发射气体组合,它形成腐蚀性的硫酸和硝酸。美国EPA建议发动机制造商应定期关闭其EGR系统以避免腐蚀性硫酸和硝酸的形成,以便准确地预测腐蚀过程,已经开发了一种冷凝模型来研究形成和扩散的速率硝酸和硫酸对冷管表面。已经在一级4重型卡车的正常操作条件下为典型的EGR冷却器进行了三维计算流体动力学(CFD)模拟。还开发了一大块,1D热量和传质模型来研究冷凝过程的最重要的物理方面。 CFD和缩合速率和局部流体特性的分析结果是对更昂贵的实验测量和测试的重要且廉价的补充。这种模型可用于改善设计并优化EGR系统的操作条件,并且可以成为设计和制造的柴油发动机的下一代EGR系统的宝贵工具,该模型是一般的,技术和数值该研究的结果可以扩展到发动机可靠性,腐蚀减少和防止其他工业发动机的损坏。

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