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Numerical Modeling of Soot and NOx Emissions of a Diesel/Methanol Dual Fuel Engine

机译:柴油/甲醇双燃料发动机烟尘和NOx排放的数值模型

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In this work, a modeling study was carried out using the KIVA-3V code with the Zeldovich thermal NOx model, the improved soot formation model and the combustion model for a diesel/methanol dual fuel engine. The effects of ratios (10%,20% and 30%) of methanol substitution for diesel fuel on soot and NOx emission characteristics were investigated. Good agreements between predictions and measurements of engine out NOx and soot emissions were achieved. The present computations confirm that methanol allows soot reduction with a little NOx penalty except heavy and full load. With increasing methanol ratio, soot emission decrease markedly while NOx emissions have some increase. At 75% load, the engine-out soot emissions decrease by 66.4% while the engine out NOx emissions increase by 21.5% for 30% methanol, when compared to diesel fuel.
机译:在这项工作中,使用KIVA-3V代码与Zeldovich热NOx模型,改进的烟灰形成模型以及柴油/甲醇双燃料发动机的燃烧模型进行了建模研究。研究了甲醇替代柴油比例(10%,20%和30%)对烟灰和NOx排放特性的影响。发动机的NOx和烟尘排放量的预测与测量之间达成了良好的协议。本计算结果证实,除了重载和满载外,甲醇还可以减少烟尘,同时减少NOx排放。随着甲醇比例的增加,烟尘排放量明显减少,而氮氧化物排放量却有所增加。与柴油相比,在75%的负载下,对于30%的甲醇,发动机排出的烟尘排放量减少了66.4%,而发动机排出的氮氧化物排放量却增加了21.5%。

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