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Improving startability and reducing emissions in flexfuel spark ignition direct injection variable cam timing engine.

机译:改善柔性燃料火花点火直喷可变凸轮正时发动机的启动性能并减少其排放。

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摘要

Experimental work and analysis was done to investigate engine startup robustness and emissions of a flex-fuel spark ignition (SI) direct injection (DI) engine. The vaporization and other characteristics of ethanol fuel blends present a challenge at engine startup. Strategies to reduce the enrichment requirements for the first engine startup cycle and emissions for the second and third fired cycle at 25 degrees C +/- 1 degree C engine and intake air temperature were investigated.;Research work was conducted on a single cylinder SIDI engine with gasoline and E85 fuels, to study the effect on first fired cycle of engine startup. Piston configurations that included a compression ratio change (11 vs 15.5) and piston geometry change (flattop vs bowl) were tested, along with changes in intake cam timing (95,110,125) and fuel pressure (0.4 MPa vs 3 MPa). The goal was to replicate the engine speed, manifold pressure, fuel pressure and testing temperature from an engine startup trace for investigating the first fired cycle for the engine.;Results showed bowl piston was able to enable lower equivalence ratio engine starts with gasoline fuel, while also showing lower IMEP at the same equivalence ratio compared to flat top piston. With E85, bowl piston showed reduced IMEP as compression ratio increased at the same equivalence ratio. A preference for constant intake valve timing across fuels seemed to indicate that flattop piston might be a good flex-fuel piston. Significant improvements were seen with higher CR bowl piston with high fuel pressure starts, but showed no improvement with low fuel pressures.;Simulation work was conducted to analyze initial three cycles of engine startup in GT-POWER for the same set of hardware used in the experimentations. A steady state validated model was modified for startup conditions. The results of which allowed an understanding of the relative residual levels and IMEP at the test points in the cam phasing space. This allowed selecting additional test points that enable use of higher residual levels, eliminating those with smaller trapped mass incapable of producing required IMEP for proper engine turnover.;The second phase of experimental testing results for 2nd and 3rd startup cycle revealed both E10 and E85 prefer the same SOI of 240°bTDC at second and third startup cycle for the flat top piston and high injection pressures. E85 fuel optimal cam timing for startup showed that it tolerates more residuals compared to E10 fuel. Higher internal residuals drives down the O requirement for both fuels up to their combustion stability limit, this is thought to be direct benefit to vaporization due to increased cycle start temperature. Benefits are shown for an advance IMOP and retarded EMOP strategy at engine startup.;Overall the amount of residuals preferred by an engine for E10 fuel at startup is thought to be constant across engine speed, thus could enable easier selection of optimized cam positions across the startup speeds.
机译:进行了实验工作和分析,以研究柔性燃料火花点火(SI)直喷(DI)发动机的发动机启动鲁棒性和排放。乙醇燃料混合物的汽化和其他特性在发动机启动时提出了挑战。研究了在25摄氏度+/- 1摄氏度的发动机和进气温度下降低第一发动机启动循环的浓缩要求以及第二和第三点火循环的排放的策略。;在单缸SIDI发动机上进行了研究工作用汽油和E85燃料研究对发动机启动的第一个点火循环的影响。测试了包括压缩比变化(11 vs 15.5)和活塞几何形状变化(平顶vs碗形)的活塞配置,以及进气凸轮正时(95,110,125)和燃油压力(0.4 MPa vs 3 MPa)的变化。目的是从发动机启动轨迹中复制发动机转速,歧管压力,燃料压力和测试温度,以调查发动机的第一个点火循环。结果表明,碗形活塞能够使当量比较低的发动机以汽油燃料启动,与平顶活塞相比,在相同当量比下的IMEP也更低。使用E85时,在相同的当量比下,碗形活塞的IMEP降低,因为压缩比增加。优先考虑跨燃料使用恒定进气门正时似乎表明,平顶活塞可能是一种良好的柔性燃料活塞。在较高的燃油压力启动下使用较高的CR碗形活塞可以看到显着的改进,而在较低的燃油压力下却没有显示出明显的改进。进行了仿真工作,以分析GT-POWER中发动机所用的同一套硬件的发动机启动的最初三个循环实验。稳态验证模型已针对启动条件进行了修改。其结果允许了解凸轮定相空间中测试点的相对残留水平和IMEP。这样就可以选择更多的测试点,以允许使用更高的残留水平,从而消除那些残留量较小,无法产生适当的发动机运转所需的IMEP的测试点。第二和第三次启动循环的第二阶段实验测试结果表明,E10和E85都更偏爱对于平顶活塞和高喷射压力,在第二和第三次启动循环时,SOI为240°bTDC。 E85燃油的最佳启动凸轮正时表明,与E10燃油相比,它能承受更多的残留物。较高的内部残留物将两种燃料的O需求降低到其燃烧稳定性极限,这被认为是由于循环开始温度升高而直接蒸发的好处。显示了在发动机启动时采用先进的IMOP和延迟的EMOP策略的优势。发动机在启动时总体上首选的E10燃油残留量被认为在整个发动机速度上都是恒定的,因此可以更轻松地选择整个发动机的最佳凸轮位置。启动速度。

著录项

  • 作者

    Kale, Vaibhav S.;

  • 作者单位

    Michigan Technological University.;

  • 授予单位 Michigan Technological University.;
  • 学科 Mechanical engineering.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 111 p.
  • 总页数 111
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:53:35

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