使用微波辅助火花的湿乙醇燃料SI发动机的稳定性极限扩展

Benjamin Wolk
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引用次数: 4

摘要

先进的发动机可以通过在稀释的燃料-空气混合物和更高的压缩比中运行来实现更高的效率和减少排放,但是当稀释水平很高时,发动机的稳定运行范围受到燃烧和火焰传播的限制。一项先进的点火技术可靠地扩展了内燃机的工作范围,将有助于下一代高效发动机的实际实施。日本Imagineering公司正在开发的微波辅助火花塞,此前已被证明可以通过等离子体辅助燃烧扩大汽油发动机的稳定工作范围,但限制其工作的因素尚未得到很好的表征。本实验研究有两个主要目的:(1)研究微波辅助火花塞扩大湿乙醇燃料发动机稳定工作范围的能力;(2)研究影响微波增强点火过程程度的因素。稳定性范围是通过检查指示的平均有效压力的变异系数作为不稳定性的度量,以及指示的特定乙醇消耗量作为效率的度量来研究的。当发动机在稍低的空燃比下运行时,发动机效率得到了提高,随着不稳定的开始,当混合物变得太稀时,最终消除了与稀燃相关的效率提高。微波辅助点火减少了稀释引发的不稳定性,与在超稀薄条件下不稳定的火花操作相比,提高了效率。当未增强的火焰内核发展足够缓慢时,微波辅助火花也促进了更快的平均早期火焰内核发展。微波辅助火焰发展增强与计算出的缸内参数之间的相关性表明,增强与沉积到火焰核中的能量之间存在关系,但散射阻止了推导出适用于所有测试案例的统一经验相关性。
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Stability Limit Extension of a Wet Ethanol-fueled SI Engine using aMicrowave-assisted Spark
Advanced engines can achieve higher efficiencies and reduced emissions by operating in regimes with diluted fuel-air mixtures and higher compression ratios, but the range of stable engine operation is constrained by combustion initiation and flame propagation when dilution levels are high. An advanced ignition technology that reliably extends the operating range of internal combustion engines will aid practical implementation of nextgeneration high-efficiency engines. The microwave-assisted spark plug under development by Imagineering, Inc. of Japan has previously been shown to expand the stable operating range of gasoline-fueled engines through plasmaassisted combustion, but the factors limiting its operation were not well characterized. The present experimental study has two main goals: (1) to investigate the capability of the microwave-assisted spark plug towards expanding the stable operating range of wet-ethanol-fueled engines, and (2) to examine the factors affecting the extent to which microwaves enhance ignition processes. The stability range is investigated by examining the coefficient of variation of indicated mean effective pressure as a metric for instability, and indicated specific ethanol consumption as a metric for efficiency. Engine efficiency improved when the engine was run at slightly-lean air-fuel ratios, with the onset of instability eventually eliminating efficiency gains associated with lean-burn when mixtures become too dilute. Microwave-assisted ignition reduced dilution-triggered instability, improving efficiency compared to unstable spark-only operation at ultra-lean conditions. Microwave-assisted spark also promotes faster average early flame kernel development when un-enhanced flame kernel development is sufficiently slow. Correlations between microwave-assisted flame development enhancement and calculated in-cylinder parameters suggest a relation between enhancement and the amount of energy deposited into the flame kernel, but scatter prevented derivation of a unifying empirical correlation governing all tested cases.
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