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Modeling & simulation study to assess the effect of CO2 on performance and emissions characteristics of 18% HCNG blend on a light duty SI engine

机译:建模和仿真研究,以评估二氧化碳对轻型SI发动机中18%HCNG混合物的性能和排放特性的影响

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Lower carbon to hydrogen ratio of CNG makes it an attractive alternate fuel for transportation. However, the sluggish combustion characteristics of CNG significantly impact the vehicle fuel economy and exhaust emissions. Blending of hydrogen in CNG improves the combustion phenomenon due to the high flame speed of hydrogen. However, when HCNG blends are used in an unmodified engine i.e. engine calibrated for CNG operation, the NO and CH4 emissions increase. In order to curb these emissions, either the engine calibration needs to be optimized or the performance gets compromised. Indian Oil R&D has patented a single step Compact reforming process for production of 18% HCNG fuel through CNG without the need of high pressure blending. The present work aims to model and simulate the feasibility of varying the CO2 percentage in 18% HCNG produced on -site from CNG through Compact Reforming Process to curb the NOx and CH4 emissions while improving the overall fuel economy of a light duty SI engine. The CO2 was varied from 1% to 6% (v/v) in 18% HCNG blend and the CO, CO2, CH4, O-2, H-2, NO, H2O, N-2 emissions were calculated at full load. The study concludes that by optimizing the CO2 in 18% HCNG fuel, significant reduction in mass emissions can be achieved while improving the thermal efficiency with minimal penalty on full load power. Copyright (C) 2015, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.
机译:CNG较低的碳氢比使其成为一种有吸引力的运输替代燃料。但是,压缩天然气的缓慢燃烧特性极大地影响了车辆的燃油经济性和废气排放。由于氢气的高火焰速度,氢气在CNG中的掺混改善了燃烧现象。但是,当将HCNG混合物用于未改装的发动机(即为CNG运行进行校准的发动机)时,NO和CH4排放量会增加。为了抑制这些排放,要么需要优化发动机校准,要么会降低性能。印度石油研发公司已获得专利的一步精整重整工艺专利,该工艺可通过CNG生产18%HCNG燃料,而无需高压混合。本工作旨在对通过压缩重整工艺从CNG现场生产的18%HCNG现场改变CO2百分比以控制NOx和CH4排放,同时改善轻型SI发动机的整体燃油经济性进行建模和模拟的可行性。在18%HCNG混合物中,CO2从1%到6%(v / v)变化,并且在满负荷情况下计算了CO,CO2,CH4,O-2,H-2,NO,H2O,N-2排放。该研究得出的结论是,通过优化18%HCNG燃料中的CO2,可以显着减少质量排放,同时提高热效率,而对满载功率的损失最小。 Hydrogen Energy Publications,LLC版权所有(C)2015。由Elsevier Ltd.出版。保留所有权利。

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