首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >System modelling and analysis for design and development of a lean exhaust after-treatment system
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System modelling and analysis for design and development of a lean exhaust after-treatment system

机译:用于稀薄排气后处理系统设计和开发的系统建模和分析

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摘要

A comprehensive system-level modelling methodology for vehicle exhaust and after-treatment system development is presented. Within the constraints required for a development vehicle equipped with a lean-burn direct-injection gasoline engine, system-level analysis was extensively applied to guide the design of the after-treatment system. The size and location of the lean nitrogen oxide (NO_x) after-treatment device was determined to achieve the best trade-off between engine back pressure, catalyst light-off, and acceptable thermal ageing under high-speed and high-load conditions. In addition, various after-treatment architecture and layout concepts were efficiently evaluated and screened, requirements for after-treatment components and exhaust thermal management devices were defined, and promising technologies were recommended for further development and testing. Beyond immediate implementation in the development vehicle, several exhaust thermal management strategies (electrically heated converter, lambda split control, engine stop-start, and multiple warm-up) were explored. These technologies have been assessed individually and in combination to formulate effective thermal management strategies under fuel penalty constraints. While the specific applications described in this paper are for a lean-burn gasoline direct-injection development vehicle, the methodology is equally applicable to advanced powertrains with one or more after-treatment devices (diesel engines, alternative fuels, hybrid vehicles, etc.)
机译:提出了用于车辆排气和后处理系统开发的综合系统级建模方法。在配备有稀燃直喷汽油发动机的开发车辆所需的约束条件下,系统级分析被广泛应用于指导后处理系统的设计。确定稀薄的氮氧化物(NO_x)后处理设备的尺寸和位置,以便在高速和高负荷条件下在发动机背压,催化剂起燃和可接受的热老化之间达到最佳平衡。此外,有效地评估和筛选了各种后处理架构和布局概念,定义了对后处理组件和排气热管理设备的要求,并推荐了有前途的技术用于进一步的开发和测试。除了在开发工具中立即实施之外,还探索了几种排气热管理策略(电加热转换器,lambda分流控制,发动机停止启动和多次预热)。这些技术已经过单独评估和组合评估,以制定在燃油罚款约束下的有效热管理策略。尽管本文描述的特定应用是针对稀薄汽油直接喷射开发车辆,但该方法同样适用于具有一个或多个后处理设备(柴油发动机,代用燃料,混合动力汽车等)的先进动力总成。

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