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Challenge Determining a Combustion System Concept for Downsized SI-engines - Comparison and Evaluation of Several Options for a Boosted 2-cylinder SI-engine

机译:挑战确定缩小Si-engines的燃烧系统概念 - 增压2缸Si发动机几种选择的比较与评价

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To meet future CO_2 emissions limits and satisfy the bounds set by exhaust gas legislation reducing the engine displacement while maintaining the power output ("Downsizing") becomes of more and more importance in the SI engine development process. The total number of cylinders per engine has to be reduced to keep the thermodynamic disadvantages of a small combustion chamber layout as small as possible. Doing so new challenges arise concerning the mechanical design, the design of the combustion system concept as well as strategies maintaining a satisfying transient torque behavior. To address these challenges a turbocharged 2-cylinder SI engine was designed for research purposes by Weber Motor GmbH and Robert Bosch GmbH. The design process was described in detail in last year's paper SAE 2012-01-0832. Since the engine design is very modular it allows for several different engine layouts which can be examined and evaluated. This paper shows a comparison between three major combustion system concepts: - Gasoline Direct Injection, - Advanced Gasoline Port-fuel Injection, and - Compressed Natural Gas Port-fuel Injection. As a first step the engine behavior was examined using different turbochargers on the test bed to find the best match for a 2-cylinder engine application, especially with respect to low-end torque and transient behavior. Subsequently the 2-cylinder engine was equipped with three different combustion system concepts and tested on the engine test bed using the standard measurement equipment including high and low pressure indication. The concepts will be evaluated on the basis of their low-end torque and transient performance. Therefore a measurement method and a key performance index were defined. Additionally the influence of the combustion system concept choice on fuel consumption and CO_2 emissions will be evaluated using drive cycle simulations. For each concept the advantages and challenges will be highlighted and discussed.
机译:为了满足未来的CO_2排放限制,满足废气立法所设定的界限,降低发动机位移,同时保持电力输出(“缩小化”)在SI发动机开发过程中变得越来越重要。必须减小每个发动机的圆柱体的总数,以保持小燃烧室布局尽可能小的热力学缺点。有关机械设计,燃烧系统概念的设计以及维持满足瞬态扭矩行为的策略,产生新的挑战。为了解决这些挑战,设计了涡轮增压的2缸SI发动机,专为Weber Motor GmbH和Robert Bosch GmbH进行了研究目的而设计。在去年的纸张SAE 2012-01-0832中详细描述了设计过程。由于发动机设计非常模块化,因此它允许几种不同的发动机布局可以检查和评估。本文显示了三大燃烧系统概念之间的比较: - 汽油直喷, - 先进的汽油料燃料喷射, - 压缩天然气端口 - 燃油喷射。作为第一步,在试验台上使用不同的涡轮增压器检查发动机行为,以找到2缸发动机应用的最佳匹配,特别是相对于低端扭矩和瞬态行为。随后,2缸发动机配备了三种不同的燃烧系统概念,并使用包括高压和低压指示的标准测量设备在发动机试验台上进行测试。概念将基于其低端扭矩和瞬态性能进行评估。因此,定义了一种测量方法和关键性能指标。另外,将使用驱动周期模拟评估燃烧系统概念选择对燃料消耗和CO_2排放的影响。对于每个概念,将突出显示和讨论的优势和挑战。

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