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Natural gas fueled compression ignition engine performance and emissions maps with diesel and RME pilot fuels

机译:使用柴油和RME引燃燃料的天然气燃料压缩点火发动机性能和排放图

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摘要

When natural gas is port/manifold injected into a compression ignition engine, the mixture of air and the natural gas is compressed during the compression stroke of the engine. Due to the difference in the values of specific heat capacity ratio between air and natural gas, the temperature and pressure at the time of pilot fuel injection are different when compared to a case where only air is compressed. Also, the presence of natural gas affects the peak in-cylinder (adiabatic flame) temperature. This significantly affects the performance as well as emissions characteristics of natural gas based dual fueling in CI engine. Natural gas has been extensively tested in a single cylinder compression ignition engine to obtain performance and emissions maps.Two pilot fuels, diesel and RME, have been used to pilot natural gas combustion. The performance of the two liquid fuels used as pilots has also been assessed and compared. Tests were conducted at 48 different operating conditions (six different speeds and eight different power output conditions for each speed) for single fueling cases. Both the diesel and RME based single fueling cases were used as baselines to compare the natural gas based dual fueling where data was collected at 36 operating conditions (six different speeds and six different power output conditions for each speed). Performance and emissions characteristics were mapped on speed vs brake power plots. The thermal efficiency values of the natural gas dual fueling were lower when compared to the respective pilot fuel based single fueling apart from the highest powers. The effect of engine speed on volumetric efficiency in case of the natural gas based dual fueling was significantly different from what was observed with the single fueling. Contours of specific NOX for diesel and RME based single fueling differ significantly when these fuels were used to pilot natural gas combustion. For both of the single fueling cases, maximum specific NOX were centered at the intersection of medium speeds and medium powers and they decrease in all directions from this region of maximum values. On the other hand, an opposite trend was observed with dual fueling cases where minimum specific NOX were observed at the center of the map and they increase in all direction from this region of minimum NOX. RME piloted specific NOX at the highest speeds were the only exception to this trend. Higher specific HC and lower specific CO2 emissions were observed in case of natural gas based dual fueling. The emissions were measured in g/MJ of engine power.
机译:当将天然气端口/歧管注入压缩点火发动机中时,在发动机的压缩冲程期间,空气和天然气的混合物被压缩。由于空气与天然气之间的比热容比的值不同,因此与仅压缩空气的情况相比,引燃燃料喷射时的温度和压力不同。同样,天然气的存在会影响气缸内(绝热火焰)的峰值温度。这显着影响CI发动机中基于天然气的双燃料加注的性能以及排放特性。天然气已经在单缸压缩点火发动机中进行了广泛的测试以获得性能和排放图。两种引燃燃料,柴油和RME,已被用于引燃天然气燃烧。还评估并比较了用作飞行员的两种液体燃料的性能。对于单加油情况,在48种不同的运行条件(每种速度有6种不同的速度,每种速度有8种不同的功率输出条件)下进行了测试。基于柴油和基于RME的单加油情况均用作比较基于天然气的双加油情况的基准,在36种运行条件下(六种不同的速度和六种不同的功率输出条件)收集了数据。将性能和排放特性映射到速度与制动功率的关系图上。与各自的基于引燃燃料的单一燃料相比,天然气双燃料的热效率值较低,但功率最高。在基于天然气的双燃料加注情况下,发动机转速对容积效率的影响与单燃料加注时明显不同。当将这些燃料用于天然气燃烧时,基于柴油和RME的单燃料的特定NOX轮廓明显不同。对于这两种单一加油情况,最大比氮氧化物均以中等速度和中等功率的交点为中心,并且从该最大值区域沿各个方向降低。另一方面,在双重加油情况下观察到相反的趋势,在这种情况下,在图的中心观察到最小比氮氧化物,并且从最小氮氧化物的该区域沿各个方向增加。 RME以最高速度驾驶特定的NOX是这种趋势的唯一例外。在以天然气为基础的双燃料情况下,观察到较高的比HC和较低的CO2比排放。排放以g / MJ发动机功率进行测量。

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