首页> 外文会议>ASME Internal Combustion Engine Division fall technical conference 2012 >LOW TEMPERATURE GASOLINE COMBUSTION WITH DIESEL MICRO-PILOT INJECTION IN A SIX-CYLINDER HEAVY DUTY ENGINE
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LOW TEMPERATURE GASOLINE COMBUSTION WITH DIESEL MICRO-PILOT INJECTION IN A SIX-CYLINDER HEAVY DUTY ENGINE

机译:六缸重型发动机柴油微导喷的低温汽油燃烧

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This paper describes the operation of a heavy duty six-cylinder engine in a dual fuel, Low Temperature Combustion (LTC) mode with very low engine-out NO_x und soot emissions according to the US EPA Tier IV final emission limits in the corresponding Cl test cycle. This operation mode makes use of a short pilot injection of diesel fuel, which is injected directly into the cylinder, to ignite a highly diluted, premixed gasoline air mixture. Multicylinder engine operation could be demonstrated over the entire engine operating map with loads of up to 2 MPa BMEP. Expensive afteitreatment systems for NO_x and soot emissions are not required. This paper also discusses the challenges involved with the implementation of this combustion system on a multicylinder engine. When transferring the dual fuel LTC from a single cylinder research engine to a multicylinder engine, the design of some engine components, e.g. the camshaft and the piston, were changed. The intake manifold is modified with port fuel injectors for ideal gasoline mixture preparation and equal distribution to all cylinders. To avoid cylinder imbalances, it is possible to control the injected masses of gasoline and diesel fuel for the pilot injection on a per-cylinder basis. Achieving high dilution for ignition delay via EGR and boosted intake pressure to avoid high pressure rise rates and knocking presents challenges for the two-stage turbocharger design. Additionally, high EGR rates and EGR cooling for increased loads are addressed. Finally, experiments to determine the significant control parameters for the combustion process are performed on the engine. In the course of these investigations, dual fuel LTC could be transferred from a single cylinder research engine to a multicylinder engine; previously obtained single-cylinder operating conditions could be achieved even at high loads.
机译:本文根据相应的Cl测试中的美国EPA Tier IV最终排放限值,描述了重载六缸发动机在双燃料低温燃烧(LTC)模式下的运行,该模式具有非常低的发动机NO_x和碳烟排放量周期。这种运行模式利用短时的柴油预喷射,然后将其直接喷射到气缸中,以点燃高度稀释的预混合汽油空气混合物。多缸发动机的运行可以在整个发动机运行图上得到证明,其负荷高达2 MPa BMEP。不需要用于NO_x和烟尘排放的昂贵的尾气处理系统。本文还讨论了在多缸发动机上实施该燃烧系统所涉及的挑战。当将双燃料LTC从单缸研究型发动机转移到多缸发动机时,某些发动机组件的设计,例如改变了凸轮轴和活塞。进气歧管用进气道喷油器进行了改装,以实现理想的汽油混合物制备,并均匀分配至所有气缸。为了避免气缸不平衡,可以在每个气缸的基础上控制用于预喷射的汽油和柴油的喷射质量。通过EGR和更高的进气压力来实现点火延迟的高稀释,以避免高压上升率和爆震,这对两级涡轮增压器设计提出了挑战。另外,解决了用于增加负荷的高EGR率和EGR冷却。最后,在发动机上进行确定燃烧过程的重要控制参数的实验。在这些研究过程中,双燃料LTC可以从单缸研究型发动机转移到多缸发动机。即使在高负载下也可以达到先前获得的单缸工作条件。

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