首页> 外文会议>Technical Conference of the ASME Internal Combustions Engine Division >AN EXPERIMENTAL OPTIMISATION OF A SPARK IGNITION ENGINE FUEL INJECTOR TO REDUCE THE TOTAL HYDROCARBONS EMISSIONS DURING COLD START CONDITIONS
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AN EXPERIMENTAL OPTIMISATION OF A SPARK IGNITION ENGINE FUEL INJECTOR TO REDUCE THE TOTAL HYDROCARBONS EMISSIONS DURING COLD START CONDITIONS

机译:火花点火发动机燃料喷射器的实验优化,以减少冷启动条件的总碳氢化合物排放

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Engine exhaust emission limits have been subject to increasingly severe controls during the last few years. This has led to the need for a suitably structured systemic approach to the problem of exhaust gas treatment, instead of just focusing on improving catalytic converters efficiency. In other words, it has become increasingly more productive, and necessary, to carry out "global" optimization of the chemical conversion process generally present when gases are burnt, along with activities aimed directly at reduce the cause of their creation, acting on the engine geometric and operating parameters. This work was aimed at an operating experimental analysis of alternative fuel injection systems to optimize their use in order to reduce exhaust emissions in spark ignition engines, especially during cold starts in low temperature conditions.
机译:发动机排放限制在过去几年中受到越来越严峻的控制。这导致了需要适当结构化的系统方法来解决废气处理问题,而不是专注于提高催化转化器效率。换句话说,当气体被燃烧时,它已经越来越高效地进行了“全球”优化化学转换过程的优化,随着直接瞄准其创造原因,在发动机上采取行动的活动几何和操作参数。这项工作旨在替代燃料喷射系统的操作实验分析,以优化其使用,以减少火花点火发动机中的排气,特别是在低温条件下的冷启动期间。

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