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首页> 外文期刊>Oradea University. Fascicle of Management and Technological Engineering. Annals >Research on combustion process of gasoline homogenous charge compression ignition engine
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Research on combustion process of gasoline homogenous charge compression ignition engine

机译:汽油均质压燃式发动机燃烧过程的研究

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The paper presents the research designed to develop a HCCI (Homogenous Charge Compression Ignition) engine starting from a spark ignition engine platform. The chosen test engine was a single cylinder, four strokes provided with a carburettor. The results of experimental research data obtained on this version were used as a baseline for the next phase of the research. In order to obtain the HCCI configuration, the engine was modified, as follows: the compression ratio was increased from 9.7 to 11.5 to ensure that the air – fuel mixture auto- ignite and to improve the engine efficiency; the carburettor 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; the valves shape were modified to provide a safety engine operation by ensuring the provision of sufficient clearance beetween the valve and the piston; the exchange gas system was changed from fixed timing to variable valve timing to have the possibilities of modification of quantities of trapped burnt gases. 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:本文介绍了旨在从火花点火发动机平台开始开发HCCI(均质压缩压缩点火)发动机的研究。选择的测试引擎是一个单汽缸,带有汽化器的四个冲程。在此版本上获得的实验研究数据的结果用作下一阶段研究的基准。为了获得HCCI配置,对发动机进行了如下修改:将压缩比从9.7增加到11.5,以确保空气燃料混合物自动点火并提高发动机效率。化油器被直接燃油喷射系统代替,以便在考虑到所测量的进气质量的情况下精确地控制每个循环的燃油量;通过确保在气门和活塞之间留有足够的间隙,气门的形状经过修改以提供安全的发动机操作;交换气体系统从固定正时更改为可变气门正时,从而可以更改捕获的燃烧气体量。在虚拟模型上模拟了汽缸过程。实验研究工作集中于确定控制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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