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Combustion in homogeneous charge compression ignition engines: Experiments and detailed chemical kinetic simulations.

机译:均质充量压燃式发动机中的燃烧:实验和详细的化学动力学模拟。

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摘要

Homogeneous charge compression ignition (HCCI) engines are being considered as an alternative to diesel engines. The HCCI concept involves premixing fuel and air prior to induction into the cylinder (as is done in current spark-ignition engine) then igniting the fuel-air mixture through the compression process (as is done in current diesel engines). The combustion occurring in an HCCI engine is fundamentally different from a spark-ignition or Diesel engine in that the heat release occurs as a global autoignition process, as opposed to the turbulent flame propagation or mixing controlled combustion used in current engines. The advantage of this global autoignition is that the temperatures within the cylinder are uniformly low, yielding very low emissions of oxides of nitrogen (NOx, the chief precursors to photochemical smog). The inherent features of HCCI combustion allows for design of engines with efficiency comparable to, or potentially higher than, diesel engines.; While HCCI engines have great potential, several technical barriers exist which currently prevent widespread commercialization of this technology. The most significant challenge is that the combustion timing cannot be controlled by typical in-cylinder means. Means of controlling combustion have been demonstrated, but a robust control methodology that is applicable to the entire range of operation has yet to be developed.; This research focuses on understanding basic characteristics of controlling and operating HCCI engines. Experiments and detailed chemical kinetic simulations have been applied to characterize some of the fundamental operational and design characteristics of HCCI engines. Experiments have been conducted on single and multi-cylinder engines to investigate general features of how combustion timing affects the performance and emissions of HCCI engines. Single-zone modeling has been used to characterize and compare the implementation of different control strategies. Multi-zone modeling has been applied to investigate combustion chamber design with respect to increasing efficiency and reducing emissions in HCCI engines.
机译:均质充气压缩点火(HCCI)发动机被认为是柴油发动机的替代产品。 HCCI概念涉及在进气之前将燃料和空气预混合到气缸中(如当前的火花点火发动机中所做的那样),然后通过压缩过程点燃燃料-空气混合物(如当前的柴油发动机中那样)。 HCCI发动机中发生的燃烧与火花点火或柴油发动机的根本不同之处在于,与当前发动机中使用的湍流火焰传播或混合受控燃烧不同,放热是通过整体自燃过程发生的。这种全局自燃的优点是气缸内的温度始终较低,产生的氮氧化物(NO x ,光化学烟雾的主要前体)的排放量非常低。 HCCI燃烧的固有特征使发动机的设计效率可与柴油发动机相媲美,甚至可能更高。尽管HCCI发动机具有巨大的潜力,但存在一些技术障碍,这些障碍目前阻碍了该技术的广泛商业化。最重大的挑战是燃烧正时不能通过典型的缸内装置来控制。已经证明了控制燃烧的手段,但是尚未开发出适用于整个操作范围的鲁棒的控制方法。这项研究的重点是了解控制和操作HCCI发动机的基本特征。实验和详细的化学动力学模拟已用于表征HCCI发动机的一些基本运行和设计特征。已经在单缸和多缸发动机上进行了实验,以研究燃烧正时如何影响HCCI发动机的性能和排放的一般特征。单区域建模已用于表征和比较不同控制策略的实现。多区域建模已用于研究燃烧室设计,以提高HCCI发动机的效率并减少排放。

著录项

  • 作者

    Flowers, Daniel Lee.;

  • 作者单位

    University of California, Davis.;

  • 授予单位 University of California, Davis.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2001
  • 页码 173 p.
  • 总页数 173
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;
  • 关键词

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