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Studying engine cold start characteristics at low temperatures for CNG and HCNG by investigating low-temperature oxidation

机译:通过研究低温氧化研究CNG和HCNG在低温下的发动机冷启动特性

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Engine cold start characteristics at low ambient temperatures based on first firing cycles were studied on a 1.7-1 four-stroke engine for Compressed Natural Gas (CNG) and hydrogen-CNG blend fuels. In these studies engine speed, lambda ((Actual air-fuel ratio)/(Stoichiometric air-fuel ratio)), intake manifold pressure, injection pulse duration, battery voltage, intake manifold temperature, coolant temperature, and fuel line pressure at natural ambient temperature, 0 ℃, and -7.5 ℃ were measured. Test results indicated for various fuels when ambient temperature decreases, lambda decreases also, but when hydrogen added to CNG (in this investigations the amount of hydrogen was 10% by volume), at similar ambient temperature, lambda increased. This implied that air-fuel mixture became leaner, which in turn could affect unburned hydrocarbons emission. Moreover, when ambient temperature decreases, after-crank-and-fire maximum engine flair speed decreases, but when hydrogen added to CNG, after-crank-and-fire maximum engine flair speed increased in comparison with pure CNG. However, when hydrogen added to CNG some instantaneous rising and falling occurred in engine speed exactly after cranking duration. This research investigated the low-temperature oxidation of CNG and the effect of adding hydrogen at low temperature to find the cause of rising and falling in engine speed. The results indicated consumption of OH by hydrogen during low-temperature oxidation of CNG. The decreased OH concentration leads to retarded heat release and has effect on engine speed.
机译:在一个用于压缩天然气(CNG)和氢-CNG混合燃料的1.7-1四冲程发动机上,研究了基于首次点火循环在低环境温度下的发动机冷启动特性。在这些研究中,发动机转速,λ((实际空燃比)/(化学计量空燃比)),进气歧管压力,喷射脉冲持续时间,电池电压,进气歧管温度,冷却液温度和自然环境下的燃油管路压力测量了0℃和-7.5℃的温度。当环境温度降低时,各种燃料的测试结果表明,λ也会降低,但是当向CNG中添加氢气(在本研究中,氢的量为10体积%)时,在相似的环境温度下,λ会增加。这暗示着空气燃料混合物变得稀薄,这反过来又可能影响未燃烧的碳氢化合物的排放。此外,当环境温度降低时,曲柄后点火的最大发动机风速降低,但是当将氢气添加到CNG中时,与纯CNG相比,曲柄后点火的最大发动机风速提高。但是,当将氢气添加到CNG中时,恰好在启动持续时间之后,发动机转速会出现一些瞬时上升和下降。这项研究研究了CNG的低温氧化以及在低温下添加氢气的影响,以找出发动机转速升高和降低的原因。结果表明,在CNG的低温氧化过程中,氢消耗了OH。降低的OH浓度导致放热延迟,并影响发动机转速。

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