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Measurement of Equivalence Ratio in a Light-Duty Low Temperature Combustion Diesel Engine by Planar Laser Induced Fluorescence of a Fuel Tracer

机译:平面激光诱导的燃料示踪剂在轻型低温内燃机中的当量比测量

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摘要

The spatial distribution of the mixture equivalence ratio within the squish volume is quantified under non-combusting conditions by planar laser induced fluorescence (PLIF) of a fuel tracer (toluene). The measurements were made in a single-cylinder, direct-injection, light-duty diesel engine at conditions matched to an early-injection low temperature combustion mode. A fuel amount corresponding to a low load (3.0 bar indicated mean effective pressure) operating condition was introduced with a single injection. Data were acquired during the mixture preparation period from near the start of injection (-22.5° aTDC) until the crank angle where the start of high-temperature heat release normally occurs -5° aTDC). Despite the opposing squish flow, the fuel jets penetrate through the squish region to the cylinder bore. Although rapid mixing is observed in the head of each jet, rich regions remain at the head at the start of high-temperature heat release. In contrast, the fuel mixture is generally lean in the clearance volume above the bowl, though near-stoichiometric pockets are observed near the bowl rim. Significant pockets of mixture in the central clearance volume, and between the jets in the squish volume, are sufficiently lean that complete oxidation is unlikely.
机译:在非燃烧条件下,通过燃料示踪剂(甲苯)的平面激光诱导荧光(PLIF)来量化挤压体积内混合物当量比的空间分布。这些测量是在单缸直喷轻型柴油发动机上进行的,其条件与早期喷射的低温燃烧模式相匹配。通过单次喷射引入对应于低负载(3.0 bar表示平均有效压力)运行条件的燃油量。在混合物制备期间从开始注射附近(-22.5°aTDC)到通常开始发生高温放热的曲柄角-5°aTDC,获取了数据。尽管有相反的挤压流动,但燃料射流仍穿过挤压区域到达气缸孔。尽管在每个喷嘴的头部都观察到快速混合,但是在高温放热开始时,头部仍保留了丰富的区域。相反,燃料混合物通常在碗上方的间隙中稀薄,尽管在碗缘附近观察到接近化学计量的袋。在中央间隙容积中以及在挤压容积中的射流之间的大量混合气非常稀薄,不可能完全氧化。

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