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Investigations on methanol engine with DME fumigation

机译:DME熏蒸对甲醇发动机的研究

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Being a non-soot and low NO{sub}x emission level fuel, methanol (MeOH) might be considered as an attractive candidate for use in diesel engine. However, having low cetane number and high beat of vaporization, it is not possible to use in dieselengines without engine modifications. In order to take advantages of the alcohol fuels and to avoid engine complexities, which might come along with such modifications, the use of ignition improver additives dissolved in the base fuel is a normal practice.Another promising solution for qualitative combustion in methanol diesel engines is to design an onboard methanol dehydration reactor which can generate dimethyl ether (DME), for use as ignition improver. As a dissolved mixture MeOH-DME requires a special fuel system, the main emphasis was put on the fumigation technique, where a small quantity of DME has been injected into the inlet duct of the engine and the base fuel (MeOH) is conventionally injected through the common rail pump. A research program wasset up for evaluating the effectiveness of DME as ignition improver and to compare results with the conventional additive poly-ethylene-glycol (PEG).The heat release analysis has shown that, the fumigated DME undergoes sufficient combustion during compression stroke. Consequently, the temperature and pressure of the gases in the cylinder increase to the point, where the ignition delay of the base fuel (MeOH) is very short. Such precombustion affects the engine performance and emission output, especially NO{sub}x and HC levels.It was generally observed that, the regulated emissions were lower and the engine efficiency slightly higher when compared with those obtained when ethanol (EtOH) mixed with PEG or EtOH with fumigated DEE were used. However, the fumigation tests haveshown that running on MeOH fuel, the maximum torque and maximum power could not be reached, as it was expected, due to the limited delivery of flow from the fuel pump.Nevertheless, verified possibilities for using DME as ignition improver in a methanol diesel engine, leads to a proper version of the on-board DME reactor design, which would bring to another solution for methanol fuelled engines.
机译:作为非烟灰和低NO {次} X排放水平燃料,甲醇(MeOH)可能被认为是用于柴油发动机的有吸引力的候选者。然而,具有低十六烷值的数量和蒸发节拍,在没有发动机修改的情况下不可能使用柴油。为了采取酒精燃料的优点并避免发动机复杂性,这可能会随着这种修饰而溶解在基础燃料中的点火改进剂添加剂是正常实践。在甲醇柴油发动机中的定性燃烧的其他有希望的溶液是设计羊肉脱水反应器,可以产生二甲醚(DME),用作点火改进剂。作为溶解的混合物MeOH-DME需要一种特殊的燃料系统,将主要的重点放在熏蒸技术上,其中少量DME被注入发动机的入口管道,并且通常注入基础燃料(MeOH)通过公共轨道泵。一种研究计划,用于评估DME作为点火改进剂的有效性,并将结果与​​常规添加剂聚乙二醇(PEG)进行比较。热释放分析表明,熏蒸的DME在压缩冲程期间经历足够的燃烧。因此,气缸中的气体的温度和压力增加到基础燃料(MeOH)的点火延迟非常短的点。这种预燃地影响发动机性能和发射输出,特别是没有{sub} x和HC水平。通常观察到,与乙醇(EtOH)与PEG混合时获得的那些时,调节的排放较低,发动机效率略高或使用熏蒸的鹿的EtOH。然而,由于从燃料泵的流量有限的流量,因此无法达到在Meoh燃料上运行的熏蒸试验,因此无法达到在MeOH燃料上,最大扭矩和最大功率。无论如何,使用DME作为点火改进器的验证可能性在甲醇柴油发动机中,导致适当的车载DME反应器设计,这将为另一种甲醇燃料发动机的解决方案带来。

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