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Condensation-Fouling Interaction in Low-Temperature EGR-Coolers

机译:低温EGR冷却器中的结垢相互作用

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EGR cooling is a worthwhile technology capable of reducing NOx-emissions and increasing the efficiency of CI engines. Challenges arise when low-temperature cooling is applied with high fuel sulfur contents. The resulting sulfuric acid condenses in conjunction with the water of the exhaust gas and gives rise to corrosion of coolers and engine components. Additionally, fouling of the EGR cooler is exacerbated by the condensation of acidic components compromising EGR performance. In order to gain a better understanding of the underlying processes a combined experimental and model-based approach is presented. Tests of two different EGR-cooler concepts under various conditions showed a strong influence of the fuel sulfur content on fouling and condensation. The one-dimensional cooler model developed alongside these experiments consists of an activity coefficient model (NRTL) of the binary system water - sulfuric acid and a condensation model that allows for simulating the coupled condensation of both vapor components. Comparison of experimental fouling and simulated condensation results show good agreement in interpreting critical fouling phenomena that occur at temperatures in between the acid-water dew point and the dew point of pure water.
机译:EGR冷却是一项有价值的技术,能够减少NOx排放并提高CI发动机的效率。当低温冷却与高燃料硫含量一起应用时,就会出现挑战。生成的硫酸与废气中的水一起冷凝,并引起冷却器和发动机组件的腐蚀。另外,酸性组分的凝结会损害EGR性能,从而加剧EGR冷却器的结垢。为了更好地理解基本过程,提出了一种结合实验和基于模型的方法。在不同条件下对两种不同的EGR冷却器概念进行的测试表明,燃料中的硫含量对结垢和冷凝有很大影响。与这些实验一起开发的一维冷却器模型由二元系统水-硫酸的活度系数模型(NRTL)和冷凝模型组成,该模型可以模拟两种蒸汽成分的耦合冷凝。实验结垢和模拟冷凝结果的比较表明,在解释在酸性水露点和纯水露点之间的温度下发生的关键结垢现象方面,具有很好的一致性。

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