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Effects of Injection Timing on Fluid Flow Characteristics of Partially Premixed Combustion Based on High-Speed Particle Image Velocimetry

机译:注射时序对基于高速粒子图像速度的部分预混燃烧流体流动特性的影响

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Partially Premixed Combustion (PPC) is a promising combustion concept, based on judicious tuning of the charge stratification, to meet the increasing demands of emission legislation and to improve fuel efficiency. Longer ignition delays of PPC in comparison with conventional diesel combustion provide better fuel/air mixture which decreases soot and NO_x emissions. Moreover, a proper injection timing and strategy for PPC can improve the combustion stability as a result of a higher level of fuel stratification in comparison with the Homogeneous Charge Compression Ignition (HCCI) concept. Injection timing is the major parameter with which to affect the level of fuel and combustion stratification and to control the combustion phasing and the heat release behavior. The scope of the present study is to investigate the fluid flow characteristics of PPC at different injection timings. To this end, high-speed Particle Image Velocimetry (PIV) is implemented in a light-duty optical engine to measure fluid flow characteristics, including the flow fields, mean velocity and cycle-resolved turbulence, inside the piston bowl as well as the squish region with a temporal resolution of 1 crank angle degree at 800 rpm. Two injectors, having 5 and 7 holes, were compared to see their effects on fluid flow and heat release behavior for different injection timings. Reactive and non-reactive measurements were performed to distinguish injection-driven and combustion-driven turbulence. Formation of vortices and higher turbulence levels enhance the air/fuel interaction, changing the level of fuel stratification and combustion duration. Results demonstrate clearly how turbulence level correlates with heat release behavior, and provide a quantitative dataset for validation of numerical simulations.
机译:部分预混合的燃烧(PPC)是一种有前途的燃烧概念,基于精确调整电荷分层,以满足排放立法的日益增长的需求,提高燃油效率。与常规柴油燃烧相比,PPC的较长点火延迟提供了更好的燃料/空气混合物,其降低烟灰和NO_X排放。此外,与均匀电荷压缩点火(HCCI)概念相比,PPC的适当喷射正时和PPC的策略可以提高燃烧稳定性。注射时间是影响燃料水平和控制燃烧相位和热释放行为的主要参数。本研究的范围是研究PPC在不同的喷射定时的流体流动特性。为此,高速粒子图像速度计(PIV)在轻型光学发动机中实现,以测量活塞碗内的流体流动特性,包括流场,平均速度和循环湍流,以及鳞片以800rpm为1曲柄角度的时间分辨率的区域。比较两个注射器,具有5和7个孔,以了解它们对不同喷射定时的流体流动和热释放行为的影响。进行反应性和非反应性测量以区分注射驱动和燃烧驱动的湍流。涡流的形成和更高的湍流水平增强了空气/燃料相互作用,改变了燃料分层水平和燃烧持续时间。结果清楚地证明了湍流水平如何与热释放行为相关,并提供用于验证数值模拟的定量数据集。

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