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Research on cylinder processes of gasoline homogenous charge compression ignition (HCCI) engine

机译:汽油均匀电荷压缩点火(HCCI)发动机气缸工艺研究

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This paper is designed to develop a HCCI engine starting from a spark ignition engine platform. The engine test was a single cylinder, four strokes provided with carburetor. The results of experimental research on this version were used as a baseline for the next phase of the work. After that, the engine was modified for a HCCI configuration, the carburetor was replaced by a direct fuel injection system in order to control precisely the fuel mass per cycle taking into account the measured intake air-mass. To ensure that the air - fuel mixture auto ignite, the compression ratio was increased from 9.7 to 11.5. The combustion process in HCCI regime is governed by chemical kinetics of mixture of air-fuel, rein ducted or trapped exhaust gases and fresh charge. To modify the quantities of trapped burnt gases, the exchange gas system was changed from fixed timing to variable valve timing. To analyze the processes taking place in the HCCI engine and synthesizing a control system, a model of the system which takes into account the engine configuration and operational parameters are needed. The cylinder processes were simulated on virtual model. The experimental research works were focused on determining the parameters which control the combustion timing of HCCI engine to obtain the best energetic and ecologic parameters.
机译:本文旨在开发从火花点火发动机平台开始的HCCI发动机。发动机测试是单缸,四冲程提供有配油器。对该版本的实验研究结果用作工作的下一阶段的基线。之后,发动机被修改为HCCI配置,用直接燃料喷射系统代替化油器,以便考虑到测量的进气质量的每周期精确地控制燃料质量。为确保空气 - 燃料混合物自动点燃,压缩比率从9.7增加到11.5。 HCCI制度中的燃烧过程受到空气燃料混合的化学动力学的管辖,防治废气和新鲜电荷。为了改变被捕获的燃烧气体的数量,交换气体系统从固定时间变为可变气门正时。为了分析HCCI发动机中的过程并合成控制系统,需要考虑发动机配置和操作参数的系统模型。在虚拟模型上模拟气缸过程。实验研究作品集中在确定控制HCCI发动机燃烧正时的参数,以获得最佳的能量和生态参数。

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