Effect of natural gas injection timing on combustion performance & methane slip emission of diesel – NG dual fuel engine: An experimental study

Betty Ariani, I. Ariana, M. Fathallah
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引用次数: 4

Abstract

Development of marine engine technology is driven increasingly by strict emissions regulations. Dual fuel technology which uses natural gas as supporting fuel is a smart solution due to it is cleaner, cheaper and can reduces dependency on fossil fuel oil. However the phenomenon of methane slip is the biggest challenges on applications of diesel – natural gas dual fuel engine. A large amount of fuel with poor oxygen especially when engine on low load condition make some parts of methane were unburned, these uncompleted combustion raises methane slip. Meanwhile crevice or dead volume in the cylinder make gas trapped and come out as exhaust gas without participating on combustion. It is evident that being the same greenhouse gases the effect of methane slip is more dangerous than CO2 causing global warming and climate change. This research was carried out experimentally to find out how the natural gas injection time affected on the combustion performance and methane slip. On this study, three variation pulse width as injection timing of natural gas 260° BTDC, 230° BTDC and 214° BTDC were investigated to single cylinder diesel engine on constant speed 2000 rpm. The pressure of gas injection was taken fixed 3 bar, while the pilot injection timing was constant at 18 BTDC. From 30 cycles analyzed at each injection time, a significant relationship was found between optimizing the gas injection time and the gas duration to the methane slip value. Backing the injection time towards the closing of the intake valve with the right injection duration can reduce the value of methane slip. Although the 260° BTDC injection time in this research is optimal compared to the others due to the CNG wasted due to the duration of the injection that passes through the intake valveDevelopment of marine engine technology is driven increasingly by strict emissions regulations. Dual fuel technology which uses natural gas as supporting fuel is a smart solution due to it is cleaner, cheaper and can reduces dependency on fossil fuel oil. However the phenomenon of methane slip is the biggest challenges on applications of diesel – natural gas dual fuel engine. A large amount of fuel with poor oxygen especially when engine on low load condition make some parts of methane were unburned, these uncompleted combustion raises methane slip. Meanwhile crevice or dead volume in the cylinder make gas trapped and come out as exhaust gas without participating on combustion. It is evident that being the same greenhouse gases the effect of methane slip is more dangerous than CO2 causing global warming and climate change. This research was carried out experimentally to find out how the natural gas injection time affected on the combustion performance and methane slip. On this study, three variation pulse...
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天然气喷注时机对柴油-天然气双燃料发动机燃烧性能及甲烷漏失排放影响的实验研究
严格的排放法规日益推动着船用发动机技术的发展。使用天然气作为辅助燃料的双燃料技术是一种明智的解决方案,因为它更清洁、更便宜,并且可以减少对化石燃料石油的依赖。然而,甲烷滑移现象是柴油-天然气双燃料发动机应用面临的最大挑战。由于燃料量大,氧含量低,特别是发动机在低负荷工况下,导致部分甲烷燃烧不完全,导致甲烷漏失。同时,气缸的缝隙或死气使气体被困住,作为废气排出而不参与燃烧。很明显,作为同样的温室气体,甲烷泄漏的影响比二氧化碳造成的全球变暖和气候变化更危险。通过实验研究了天然气注入时间对燃烧性能和甲烷漏失的影响。以单缸柴油机为研究对象,在恒转速2000 rpm条件下,研究了天然气260°BTDC、230°BTDC和214°BTDC三种脉冲宽度变化作为喷射正时。注气压力固定为3 bar,先导注气时间恒定为18 BTDC。通过对每次注气时间的30次循环分析,发现优化注气时间和注气持续时间与甲烷滑移值之间存在显著关系。将喷射时间向后推至进气阀关闭时间,选择合适的喷射时间可以降低甲烷滑差值。尽管在本研究中,由于通过进气阀的喷射时间较长而浪费了CNG,因此260°BTDC喷射时间是最佳的,但严格的排放法规日益推动了船用发动机技术的发展。使用天然气作为辅助燃料的双燃料技术是一种明智的解决方案,因为它更清洁、更便宜,并且可以减少对化石燃料石油的依赖。然而,甲烷滑移现象是柴油-天然气双燃料发动机应用面临的最大挑战。由于燃料量大,氧含量低,特别是发动机在低负荷工况下,导致部分甲烷燃烧不完全,导致甲烷漏失。同时,气缸的缝隙或死气使气体被困住,作为废气排出而不参与燃烧。很明显,作为同样的温室气体,甲烷泄漏的影响比二氧化碳造成的全球变暖和气候变化更危险。通过实验研究了天然气注入时间对燃烧性能和甲烷漏失的影响。在本研究中,三个变异脉冲…
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