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Ignition Systems for Spray-Guided Stratified Combustion

机译:喷雾引导分层燃烧的点火系统

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The success of stratified combustion is strongly determined by the injection and ignition system used. A large temporal and spatial variation of the main parameters - mixture composition and charge motion - in the vicinity of the spark location are driving the demands for significantly improved ignition systems. Besides the requirements for conventional homogeneous combustion systems higher ignition energy and breakdown voltage capability is needed. The spark location or spark plug gap itself has to be open and well accessible for the mixture to allow a successful flame kernel formation and growth into the stratified mixture regime, while being insensitive to potential interaction with liquid fuel droplets or even fuel film. For this purpose several different ignition concepts are currently being developed. The present article will give an ignition system overview for stratified combustion within Delphi Powertrain Systems. In addition to conventional high energy systems, MultiCharge systems and their derivatives as well as more sophisticated advanced concepts are presented. Their potential for stratified systems is assessed in view of sometimes contradicting requirements like energy level vs. electrode erosion.
机译:分层燃烧的成功很大程度上取决于所使用的喷射和点火系统。主要参数(混合物成分和充气运动)在火花位置附近的时空变化很大,这促使人们对点火系统进行了显着改进。除了常规均质燃烧系统的要求外,还需要更高的点火能量和击穿电压能力。火花位置或火花塞间隙本身必须是开放的,并且对于混合物来说是容易接近的,以使成功的火焰核形成并成长为分层的混合物状态,同时对与液体燃料小滴甚至燃料膜的潜在相互作用不敏感。为此,目前正在开发几种不同的点火概念。本文将概述德尔福动力总成系统内分层燃烧的点火系统概述。除了常规的高能系统之外,还介绍了MultiCharge系统及其派生产品以及更复杂的高级概念。考虑到有时相互矛盾的要求(例如能量水平与电极腐蚀),评估了它们在分层系统中的潜力。

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