首页> 外文期刊>Journal of the air & waste management association >Real-world In-use Activity, Fuel Use, And Emissions For Nonroad Construction Vehicles: A Case Study For Excavators
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Real-world In-use Activity, Fuel Use, And Emissions For Nonroad Construction Vehicles: A Case Study For Excavators

机译:非道路施工车辆的实际使用活动,燃料使用和排放:挖掘机的案例研究

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摘要

A study design was developed and demonstrated for deployment of a portable emission measurement system (PEMS) for excavators.Excavators are among the most commonly used vehicles in construction activities.The PEMS measured nitric oxide,carbon monoxide,hydrocarbons,carbon dioxide,and opacity-based particulate matter.Data collection,screening,processing,and analysis protocols were developed to assure data quality and to quantify variability in vehicle fuel consumption and emissions rates.The development of data collection procedures was based on securing the PEMS while avoiding disruption to normal vehicle operations.As a result of quality assurance,approximately 90% of the attempted measurements resulted in valid data.On the basis of field data collected for three excavators,an average of 50% of the total nitric oxide emissions was associated with 29% of the time of operation,during which the average engine speed and manifold absolute pressure were significantly higher than corresponding averages for all data.Mass per time emission rates during non-idle modes (i.e.,moving and using bucket) were on average 7 times greater than for the idle mode.Differences in normalized average rates were influenced more by intercycle differences than in-tervehicle differences.This study demonstrates the importance of accounting for intercycle variability in real-world in-use emissions to develop more accurate emission inventories.The data collection and analysis methodology demonstrated here is recommended for application to more vehicles to better characterize real-world vehicle activity,fuel use,and emissions for nonroad construction equipment.
机译:研发了一项研究设计,并证明了该技术可用于挖掘机的便携式排放测量系统(PEMS)的部署。挖掘机是建筑活动中最常用的车辆之一.PEMS可测量一氧化氮,一氧化碳,碳氢化合物,二氧化碳和不透明度-制定了数据收集,筛选,处理和分析协议,以确保数据质量并量化车辆燃油消耗和排放率的可变性。数据收集程序的开发基于确保PEMS的同时避免对正常车辆造成干扰作为质量保证的结果,大约90%的尝试测量得出有效数据。根据对三台挖掘机收集的现场数据,平均一氧化氮总排放量的50%与29%的排放量有关。运行时间,在此期间平均发动机转速和歧管绝对压力显着高于对应值所有数据的g平均值。非怠速模式(即移动和使用铲斗)下的每时间质量排放速率平均比空闲模式大7倍。归一化平均速率的差异受周期间差异的影响大于内部差异。车辆差异。本研究证明了在实际使用中的排放中考虑周期间变化对建立更准确的排放清单的重要性。建议将此处展示的数据收集和分析方法应用于更多车辆,以更好地表征真实车辆非道路施工设备的活动,燃料使用和排放。

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