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Multi-Dimensional-Modeling-Based Development of a Novel 2-Zone Combustion Chamber Applied to Reactivity Controlled Compression Ignition Combustion

机译:基于多维模型的新型2区燃烧室的开发,该燃烧室用于反应性控制的压缩点火燃烧

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摘要

A novel 2-zone combustion chamber concept (patent pending) was developed using multi-dimensional modeling. At minimum volume, an axial projection in the piston divides the volume into distinct zones joined by a communication channel. The projection provides a means to control the mixture formation and combustion phasing within each zone. The novel combustion system was applied to reactivity controlled compression ignition (RCCI) combustion in both light-duty and heavy-duty diesel engines. Results from the study of an 8.8 bar BMEP, 2600 RPM operating condition are presented for the light-duty engine. The results from the heavy-duty engine are at an 18.1 bar BMEP, 1200 RPM operating condition. The effect of several major design features were investigated including the volume split between the inner and outer combustion chamber volumes, the clearance (squish) height, and the top ring land (crevice) volume. The results show significant improvements in the peak rate of pressure rise (ROPR), unburned hydrocarbon (UHC) emissions, and carbon monoxide (CO) emissions relative to open chamber RCCI combustion. Ultra-low soot and NOx emissions as well as a significant fuel consumption improvement, relative to conventional diesel combustion, were obtained with the novel 2-zone combustion chamber. The novel 2-zone combustion system allows later, ignition controlling, diesel injection timings to be used while maintaining low UHC and CO emissions. Therefore control over combustion phasing and the peak ROPR are enhanced.
机译:使用多维模型开发了一种新颖的2区燃烧室概念(正在申请专利)。在最小体积下,活塞中的轴向凸起将体积分成由连通通道连接的不同区域。该突起提供了一种控制每个区域内的混合物形成和燃烧定相的手段。新型燃烧系统被应用于轻型和重型柴油机的反应性控制压燃(RCCI)燃烧。提出了针对轻型发动机的8.8 bar BMEP,2600 RPM运行条件的研究结果。重型发动机的结果是在BMEP为18.1巴,工作转速为1200 RPM的条件下得出的。研究了几个主要设计特征的影响,包括内部和外部燃烧室容积之间的容积分配,间隙(挤压)高度和顶环平台(缝隙)容积。结果表明,相对于开放式室RCCI燃烧,峰值压力上升率(ROPR),未燃碳氢化合物(UHC)排放和一氧化碳(CO)排放的峰值得到了显着改善。使用新型的2区燃烧室,相对于传统的柴油燃烧,获得了超低的烟尘和NOx排放量以及显着的燃油消耗改善。新型的2区燃烧系统允许在保持低UHC和CO排放的同时,使用稍后的点火控制,柴油喷射正时。因此,增强了燃烧定相和峰值ROPR的控制。

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