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Engine combustion control at low loads via fuel reactivity stratification

机译:通过燃料反应性分层在低负荷下进行发动机燃烧控制

摘要

A compression ignition (diesel) engine uses two or more fuel charges during a combustion cycle, with the fuel charges having two or more reactivities (e.g., different cetane numbers), in order to control the timing and duration of combustion. By appropriately choosing the reactivities of the charges, their relative amounts, and their timing, combustion can be tailored to achieve optimal power output (and thus fuel efficiency), at controlled temperatures (and thus controlled NOx), and with controlled equivalence ratios (and thus controlled soot). At low load and no load (idling) conditions, the aforementioned results are attained by restricting airflow to the combustion chamber during the intake stroke (as by throttling the incoming air at or prior to the combustion chamber's intake port) so that the cylinder air pressure is below ambient pressure at the start of the compression stroke.
机译:压缩点火(柴油)发动机在燃烧循环期间使用两个或多个燃料加料,该燃料具有两个或多个反应性(例如,十六烷值不同),以便控制燃烧的时间和持续时间。通过适当地选择的电荷,它们的相对量,和它们的定时的反应性,燃烧可定制,以实现最佳的功率输出(因此燃料效率),在受控的温度(以及因此控制NOx)的,并且具有受控的当量比(和这样控制烟灰)。在低负载和无负载(空转)条件下,通过限制进气冲程期间流向燃烧室的气流(例如通过在燃烧室的进气口处或进气口之前节流进入的空气)来获得上述结果,从而使气缸气压在压缩冲程开始时低于环境压力。

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