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QUANTIFICATION AND ANALYSIS OF THE CHARGE COOLING EFFECT OF METHANOL IN A COMPRESSION IGNITION ENGINE UTILIZING PPC STRATEGY

机译:压缩点火发动机中PPC策略中甲醇充电冷却效果的定量分析

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The charge cooling effect of methanol was studied and compared to that of iso-octane. The reduction in compression work due to fuel evaporation and the gain in expansion work were evaluated by the means of in-cylinder pressure measurements in a HD CI engine. A single injection strategy was utilized to obtain a longer premixing period to adequately capture the cooling effect. The effect was clear for both tested fuels, however, methanol generally caused the pressure to reduce more than iso-octane near TDC. It was found that the contribution of reduced compression work to the increased net indicated efficiency is negligible. Regarding the expansion work, a slower combustion with higher pressure was obtained for methanol in comparison to that of iso-octane due to the cooling effect of fuel evaporation. As a result from this, a lower heat transfer loss was obtained for methanol, in addition to the significantly lower NOx emissions.
机译:研究了甲醇的电荷冷却效果,并将其与异辛烷进行了比较。通过HD CI发动机的缸内压力测量来评估由于燃油蒸发而导致的压缩功降低和膨胀功的提高。利用单次注入策略可获得更长的预混合时间,以充分捕获冷却效果。两种测试燃料的效果都很明显,但是,甲醇通常会导致TDC附近的压力下降幅度大于异辛烷值。发现减少的压缩功对增加的净指示效率的贡献可忽略不计。关于膨胀功,由于燃料蒸发的冷却作用,与异辛烷相比,甲醇在较高压力下燃烧较慢。结果,除了显着降低NOx排放之外,还获得了较低的甲醇传热损失。

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