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LOCOMOTIVE IDLE AND START-UP EXHAUST EMISSIONS TESTING

机译:机车闲置和启动废气排放测试

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The objective of this project was to quantify locomotive idle and start-up emissions, to answer the question: "At what point is it preferable from an emissions standpoint to idle a locomotive engine rather than shut down the engine and restart it when needed?" Idle and restart emissions tests were performed on two Tier 0 emission locomotives; a 1,120 kW EMD MP15-DC Switcher (UPY1378) and a 3,280 kW line-haul GE Dash9-44CW (BNSF4373). The results of the testing showed that continuous idling emissions of NOx and PM were greater than the start up emissions from the two test locomotives. The only exception was the 15-minute restart on the line haul locomotive BNSF4373, but this was envisioned to be due to a non-typical operational cycle of the GE AESS The results of the extended idle tests showed that the older locomotive (UPY1378) operates at a relatively consistent idle emissions output through the four hours of extended idle. However, idle emissions from BNSF4373 varied over the idle period as the engine speed changes in response to on-board computer controls to accomplish engine warm-up and a series of other locomotive functions.
机译:该项目的目的是量化机车闲置和启动排放,回答问题:“在排放的角度来看,从排放的角度闲置,而不是关闭发动机并在需要时重新启动它并在需要时重新启动它?”在两级排放机车上进行空闲和重启排放测试; 1,120 kW EMD MP15-DC切换器(UPY1378)和3,280 kW线路-AUL GE DASH9-44CW(BNSF4373)。测试结果表明,NOx和PM的连续怠速排放大于两种测试机车的启动排放。唯一的例外是线路运输机车BNSF4373的15分钟重启,但由于GE Aess的非典型操作周期,延长空闲测试的结果显示较旧的机车(UPY1378)操作在相对一致的闲置排放状态,通过四小时的扩展空闲输出。然而,由于发动机速度响应车载预热和一系列其他机车功能而变化,BNSF4373的空闲时期空闲时期的空闲时间变化。

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