首页> 外文会议>2006 Fall Technical Conference of the ASME(American Society of Mechanical Engineers) Internal Combustion Engine Division >ON-SITE EMISSIONS AND FUEL CONSUMPTION MEASUREMENT TO COMPARE LOCOMOTIVE FUEL INJECTOR PERFORMANCE
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ON-SITE EMISSIONS AND FUEL CONSUMPTION MEASUREMENT TO COMPARE LOCOMOTIVE FUEL INJECTOR PERFORMANCE

机译:比较机车燃油喷射器性能的现场排放和燃油消耗量测量

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As part of the Norfolk-Southern Railroad's on-going investigation into fuel consumption reductions for their fleet of 3000 locomotives, the Center for Alternative Fuels, Engines and Emissions at West Virginia University conducted on-site locomotive engine performance and emissions measurements to characterize the performance, fuel consumption and emissions associated with fuel injectors from two injector suppliers. Emissions and fuel consumption were measured using the West Virginia University Transportable Locomotive Emissions Testing Laboratory, which was set up at the Norfolk-Southern Heavy Repair Facility in Roanoke, Virginia. The tests were conducted to evaluate potential emissions and fuel consumption differences between two fuel injector suppliers using an EMD GP38-2 locomotive equipped with a 2100 hp (1566 kW), 16-cylinder, EMD 16-645E engine. The test locomotive engine was freshly overhauled and certified to the EPA locomotive Tier 0 emissions standards. Emissions and fuel consumption measurements were conducted according to the Federal Test Procedures defined in the Code of Federal Regulations 40CFR Part 92 Subpart B [1]. The engine was first tested in the "as overhauled" configuration with the OEM fuel injectors to establish the baseline emissions and fuel consumption. The baseline FTP results confirmed that this locomotive was in compliance with the Federal Tier 0 emissions standards. The OEM specification fuel injectors were replaced with "Fuel Saver" injectors designed and manufactured by an aftermarket injector supplier referred to in this paper as Supplier B. The Supplier B injectors reduced fuel consumption on the average of 2-4% for each notch, except for Notch 4 and Low Idle. However, the Supplier B injectors increased the Nox levels by 20-30% for almost every notch, which is an expected result due to the improved combustion efficiency.
机译:作为诺福克-南部铁路公司对其3000辆机车的油耗减少进行的持续调查的一部分,西弗吉尼亚大学的替代燃料,发动机和排放中心对机车的发动机性能和排放进行了现场测量,以表征其性能。 ,来自两个喷油器供应商的喷油器相关的燃油消耗和排放。排放量和燃料消耗量是使用西弗吉尼亚大学可运输机车排放测试实验室测量的,该实验室在弗吉尼亚州罗阿诺克的诺福克南部重型维修工厂中建立。使用配备2100 hp(1566 kW)16缸EMD 16-645E发动机的EMD GP38-2机车,进行了测试,以评估两个喷油嘴供应商之间的潜在排放量和燃料消耗量差异。对测试机车发动机进行了全面检修,并通过了EPA机车Tier 0排放标准认证。排放和燃料消耗量的测量是根据《联邦法规40CFR第92部分B子部分[1]]中定义的联邦测试程序进行的。首先使用OEM燃油喷射器对发动机进行“大修”配置测试,以确定基准排放量和燃油消耗量。 FTP的基线结果确认该机车符合联邦Tier 0排放标准。 OEM规格的喷油器被售后喷油器供应商设计和制造的“节油器”喷油器代替,在本文中,喷油器供应商称为供应商B。供应商B喷油器每个槽口平均减少2-4%的燃油消耗,但4级和低怠速。但是,供应商B的喷油器几乎每一个缺口都将NOx含量提高了20-30%,这是由于燃烧效率提高而产生的预期结果。

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