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HCCI Combustion: Analysis and Experiments

机译:HCCI燃烧:分析与实验

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Homogeneous charge compression ignition (HCCI) is a new combustion technology that may develop as an alternative to diesel engines with high efficiency and low NO{sub}x and particulate matter emissions. This paper describes the HCCI research activities being currently pursued at Lawrence Livermore National Laboratory and at the University of California Berkeley. Current activities include analysis as well as experimental work. On analysis, we have developed two powerful tools: a single zone model and a multi-zone model. The single zone model has proven very successful in predicting start of combustion and providing reasonable estimates for peak cylinder pressure, indicated efficiency and NO{sub}x emissions. This model is being applied to develop detailed engine performance maps and control strategies, and to analyze the problem of engine startability. The multi-zone model is capable of very accurate predictions of the combustion process, including HC and CO emissions. The multi- zone model has applicability to the optimization of combustion chamber geometry and operating conditions to achieve controlled combustion at high efficiency and low emissions. On experimental work, we have done a thorough evaluation of operating conditions in a 4-cylinder Volkswagen TDI engine. The engine has been operated over a wide range of conditions by adjusting the intake temperature and the fuel flow rate. Satisfactory operation has been obtained over a wide range of operating conditions. Cylinder-to-cylinder variations play an important role in limiting maximum power, and should be controlled to achieve satisfactory performance.
机译:均匀的电荷压缩点火(HCCI)是一种新的燃烧技术,可作为具有高效率和低NO {SUB} X和颗粒物质排放的柴油发动机的替代品。本文介绍了目前在劳伦斯利弗莫尔国家实验室和加州大学伯克利大学追求的HCCI研究活动。目前的活动包括分析以及实验工作。在分析上,我们开发了两个强大的工具:单个区域模型和多区域模型。单区域模型已经证明非常成功地预测燃烧的开始,并为峰缸压力提供合理估计,指示效率和X X排放。该模型正在应用于开发详细的发动机性能图和控制策略,并分析发动机可启动性问题。多区域模型能够非常准确地预测燃烧过程,包括HC和CO排放。多区域模型适用于优化燃烧室几何形状和操作条件,以实现高效率和低排放的控制燃烧。在实验工作中,我们对4缸大众TDI发动机进行了彻底评估了操作条件。通过调节进气温度和燃料流速,发动机在很宽的条件下操作。在广泛的操作条件下获得了令人满意的操作。气缸到圆柱变化在限制最大功率下起着重要作用,并且应该控制以实现令人满意的性能。

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