首页> 外文期刊>International journal of engine research >Analysis of heavy-duty turbocharged diesel engine response under cold transient operation with a pre-turbo aftertreatment exhaust manifold configuration
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Analysis of heavy-duty turbocharged diesel engine response under cold transient operation with a pre-turbo aftertreatment exhaust manifold configuration

机译:具有预涡轮后处理排气歧管配置的冷态瞬态运行下的重型涡轮增压柴油机响应分析

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Diesel particulate filters are the most useful technology to reduce particulate matter from the exhaust gas of internal combustion engines. Although these devices have suffered an intense development in terms of the management of filtration and regeneration, the effect of the system location on the engine performance is still a key issue that needs to be properly addressed. The present work is focused on a computational study regarding the effects of a pre-turbo after-treatment placement under full and partial load transient operation at constant engine speed and low wall temperature along the exhaust line. The aim of the paper is to provide a comprehensive understanding of the engine response to define the guidelines of a control strategy that is able to get the standards of engine driveability during sudden accelerations under restraining thermal transient conditions governed by the aftertreatment thermal inertia. The proposed strategy overcomes the lack of temperature at the inlet of the turbine caused by the thermal transient by means of the boost and EGR control. It leads to a proper management of the power in the exhaust gas for the expansion in the turbine.
机译:柴油机微粒过滤器是减少内燃机废气中微粒物质的最有用的技术。尽管这些设备在过滤和再生管理方面经历了激烈的发展,但是系统位置对发动机性能的影响仍然是一个关键问题,需要适当解决。当前的工作集中在关于在恒定的发动机转速和沿排气管的低壁温的全负荷和部分负荷瞬态运行下,涡轮增压后处理位置的影响的计算研究。本文的目的是提供对发动机响应的全面理解,以定义控制策略的准则,该准则能够在由后处理热惯性控制的热瞬变约束条件下,在突然加速期间获得发动机可驱动性的标准。所提出的策略通过增压和EGR控制克服了由热瞬态引起的涡轮机入口温度不足的问题。这将导致对废气中功率的适当管理,以使涡轮机膨胀。

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