喷油正时、强化后冷及低硫低芳柴油对机车废气排放的影响

V. O. Markworth, S. Fritz, R. Cataldi
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引用次数: 6

摘要

通过试验研究,证明了延迟燃油喷射时间、加强增压空气后冷以及在机车发动机上使用低硫、低芳香柴油对燃油经济性和废气排放的影响。给出了两台12缸内燃机车的稳态气体和颗粒排放数据。两台实验室发动机,一台EMD 645E3B和一台GE 7FDL,每台额定功率为1860千瓦(2500马力),代表了北美机车车队的大部分。每台发动机都进行了总碳氢化合物(HC)、一氧化碳(CO)、氮氧化物(NO[sub x])和颗粒物的测试。排放是在三种稳态工况下测量的:额定速度和负载、怠速和中速和负载。在EMD发动机上的测试结果表明,4度的喷射正时延迟,加上低硫、低芳香燃料和增强的后冷,可以有效地将NO[sub x]从10.5 g/hp-h降低到7.2 g/hp-h;然而,颗粒物从0.15 g/hp-h增加到0.19 g/hp-h,燃油效率降低了4.3%。GE发动机也得到了类似的观察结果。本文详细介绍了测试发动机、测量过程和排放结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Effect Of Injection Timing, Enhanced Aftercooling, And Low Sulfur-low Aromatic Diesel Fuel On Locomotive Exhaust Emissions
An experimental study was performed to demonstrate the fuel economy and exhaust emissions implications of retarding fuel injection timing, enhancing charge air aftercooling, and using low-sulfur, low-aromatic diesel fuel for locomotive engines. Steady-state gaseous and particulate emission data are presented from two 12-cylinder diesel locomotive engines. The two laboratory engines, an EMD 645E3B and a GE 7FDL, are each rated at 1860 kW (2500 hp) and represent the majority of the locomotive fleet in North America. Each engine was tested for total hydrocarbons (HC), carbon monoxide (CO), oxides of nitrogen (NO[sub x]), and particulate. Emissions were measured at three steady-state operating conditions: rated speed and load, idle, and an intermediate speed and load. Test results on the EMD engine indicate that a 4 deg injection timing retard, along with a low-sulfur, low-aromatic fuel and enhanced aftercooling, was effective in reducing NO[sub x] from 10.5 g/hp-h to 7.2 g/hp-h; however, particulates increased from 0.15 g/hp-h to 0.19 g/hp-h, and fuel efficiency was 4.3 percent worse. Similar observations were made with the GE engine. This paper gives details on the test engines, the measurement procedures, and the emission results.
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