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A One-Dimensional Model for Particulate Deposition and Hydrocarbon Condensation in Exhaust Gas Recirculation Coolers

机译:废气再循环冷却器中颗粒沉积和碳氢化合物冷凝的一维模型

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摘要

Cooled exhaust gas recirculation (EGR) is widely used in diesel engines to control engine out NOx (oxides of nitrogen) emissions. A portion of the exhaust gases is recirculated into the intake manifold of the engine after cooling it through a heat exchanger. EGR cooler heat exchangers, however, tend to lose efficiency and have increased pressure drop as deposit forms on the heat exchanger surface. This adversely affects the combustion process, engine durability, and emissions. In this study, a 1-D model was developed to simulate soot deposition, soot removal, and condensation of several hydrocarbon (HC) species in a circular tube with turbulent gas flow at constant wall temperature. The circular tube, which makes up the computational domain in the model, represents a single channel from any EGR cooler geometry. The model takes into account soot particle deposition due to thermophoresis, diffusion, turbulent impaction, and gravitational drift. However, thermophoresis was found to be the most dominant deposition mechanism for boundary conditions at which EGR coolers typically operate. Soot removal was modeled by considering a force balance between the drag and van der Waals forces. A lognormal distribution of particles was assumed at the tube inlet. The evolution of the particle distribution in the bulk flow along the tube as well as the mass distribution in the deposit layer on the tube walls is predicted by the model. Condensation of six HC species between C15-C24 alkanes was also modeled. Predictions made by the model are in reasonably good agreement with experimental data obtained from a laboratory reactor under the same boundary conditions. There are several assumptions and simplifications built into the model, which can be refined further to improve it.
机译:冷却排气再循环(EGR)被广泛用于柴油发动机中,以控制发动机的NO x (氮氧化物)排放。一部分废气通过热交换器冷却后,再循环到发动机的进气歧管中。但是,EGR冷却器热交换器会降低效率,并且由于在热交换器表面上形成沉积物而导致压力降增加。这会对燃烧过程,发动机耐用性和排放产生不利影响。在这项研究中,开发了一维模型来模拟烟灰沉积,烟灰去除以及在恒定壁温下具有湍流气流的圆形管中几种碳氢化合物(HC)的凝结。组成模型中计算域的圆管代表来自任何EGR冷却器几何形状的单个通道。该模型考虑了由于热泳,扩散,湍流撞击和重力漂移引起的烟尘颗粒沉积。但是,对于在EGR冷却器通常运行的边界条件,热泳是最主要的沉积机理。通过考虑阻力和范德华力之间的力平衡来模拟烟尘去除。假定在管子入口处颗粒的对数正态分布。模型预测了沿管的整体流中颗粒分布的演变以及在管壁上的沉积层中的质量分布。还模拟了C 15 -C 24 烷烃之间六种HC物种的缩合。该模型所作的预测与在相同边界条件下从实验室反应堆获得的实验数据相当吻合。模型中内置了一些假设和简化形式,可以对其进行进一步完善以改进模型。

著录项

  • 来源
    《Aerosol Science and Technology》 |2012年第2期|p.198-213|共16页
  • 作者单位

    General Motors Research and Development Center, Warren, MI, USA Institute of Thermodynamics and Thermal Engineering, University of Stuttgart, Stuttgart, Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-18 00:57:38

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