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A numerical investigation on combustion and emission characteristics of a dual fuel engine at part load condition

机译:部分负荷条件下双燃料发动机燃烧和排放特性的数值研究

摘要

u3cpu3eDual fuel engines are more attractive due to lower emission levels in comparison with conventional diesel engines particularly at full loads. But it is required to study dual fuel combustion process with more details at part loads due to the poor performance and high CO and UHC emissions at these conditions. In the present study, numerical modeling of OM-355 dual fuel (injection of diesel pilot fuel to premixed mixture of air and methane) engine has been performed by using KIVA-3V code at part and full loads. Sub-models of the code were modified to simulate the fuel spray atomization, combustion and pollutants emissions processes, accurately. Results indicate that in-cylinder pressure, heat release rate and exhaust emissions predictions are in good agreement with experiments at all loads. Results show that a lean premixed natural gas mixture is ignited slowly. The slow progress of combustion process at part load, leads the heat release to be drawn more toward the expansion stroke which causes incomplete combustion, and consequently high amounts of UHC and CO will be emitted. It is found that at part loads, areas that are influenced by diesel diffusion flames are ignited and premixed natural gas flame could not be propagated properly. Hence development of diesel diffusion flame is required to burn lean natural gas mixture. But at full load, in addition to the diesel diffusion flames, premixed natural gas flame could be propagated suitably. Also, at part load because of low gas temperature in the environment of diesel spray and low diesel fuel temperature, diesel liquid droplets evaporate lately which are far from injector nozzles. Hence, it causes diesel diffusion flame from spray of each injector nozzles to be developed distinctly. It can be deduced that the flame structure is affected by operating conditions. Finally the effect of increasing the diesel fuel quantity on improving methane combustion is studied. The studied strategy could help to improving natural gas combustion due to enlarge the size of diesel combustion region.u3c/pu3e
机译:与传统的柴油发动机相比,双燃料发动机具有更低的排放水平,因此更具吸引力,尤其是在满负荷情况下。但是,由于在这些条件下性能差,CO和UHC排放量高,因此需要研究部分负载下双燃料燃烧过程的更多细节。在本研究中,已经通过使用KIVA-3V代码在部分负荷和满负荷情况下对OM-355双燃料(将柴油引燃燃料喷射到空气和甲烷的预混合气中)发动机进行了数值模拟。修改了该代码的子模型,以精确模拟燃油喷雾的雾化,燃烧和污染物排放过程。结果表明,缸内压力,放热率和废气排放预测与所有负载下的实验均吻合良好。结果表明,稀薄的预混合天然气混合物被缓慢点燃。在部分负荷下燃烧过程的缓慢进行,导致释放的热量更多地流向膨胀冲程,从而导致不完全燃烧,因此会散发出大量的UHC和CO。发现在部分负荷下,受柴油扩散火焰影响的区域被点燃,并且预混合天然气火焰无法正确传播。因此,需要燃烧柴油扩散火焰来燃烧稀薄的天然气混合物。但是在满负荷下,除了柴油扩散火焰外,预混天然气火焰也可以适当地传播。同样,由于柴油喷雾环境中的气体温度低和柴油燃料温度低,在部分负荷下,柴油液滴最近蒸发了,这些液滴远离喷射器喷嘴。因此,它会导致来自每个喷油嘴喷雾的柴油扩散火焰明显产生。可以推断出火焰结构受工作条件的影响。最后,研究了增加柴油量对改善甲烷燃烧的影响。所研究的策略可通过扩大柴油燃烧区域的大小来帮助改善天然气燃烧。 u3c / p u3e

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