Analysis of the operation states of internal combustion engine in the Real Driving Emissions test

Q2 Engineering Archives of Transport Pub Date : 2022-03-31 DOI:10.5604/01.3001.0015.8162
M. Andrych-Zalewska, Z. Chłopek, J. Merkisz, J. Pielecha
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引用次数: 12

Abstract

Internal combustion engines represent the largest share of motor vehicle propulsion types. Despite the introduction of alternative drives (hybrid and electric), combustion engines will continue to be the main factor in the development of transport. Therefore, work related to their technological development and reduction of their harmful effects on human health and the environment is required. The development of internal combustion engines can be seen in two directions: technological changes resulting in increased efficiency of such engines and the second direction connected with limi-tation of exhaust gas emission. The present work is included in the second direction of research interests and concerns the analysis of various operating conditions of internal combustion engines. The operating states, both static and dynamic, determine the operational properties of internal combustion engines, such as fuel and energy consumption as well as pollutant emissions. So far, such operating conditions have only been mapped on a chassis dynamometer in various homologation tests. The course of the type approval test was known and the conditions of measurement were also known, which made it impossible to introduce a random factor into such tests. Currently, these properties are determined in tests performed in real vehicle operating conditions – RDE (Real Driving Emissions). Such tests are representing real operating conditions of motor vehicles. Limitations for performing tests in real traffic conditions are, apart from formal requirements concerning the duration and distance of individual parts, the dynamic conditions of vehicles determined by the speed and acceleration of the vehicle. The study analyzed the properties of vehicle speed processes and engine operating states in the RDE test, taking into account its individual phases – driving in urban, rural and motorway conditions. Engine operation states are the processes of the engine rotational speed and its rela-tive torque. It was found that the dynamic properties of the vehicle speed process are much more significant than the engine operating states. It was also found that the road emission of pollutants in the RDE test, which is the property of vehicles measured in the test, the motorway phase properties have greatest impact.
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内燃机在实车排放试验中的运行状态分析
内燃机在机动车辆的推进类型中所占的份额最大。尽管引入了替代驱动(混合动力和电动),内燃机仍将是交通发展的主要因素。因此,需要开展与技术开发和减少其对人类健康和环境的有害影响有关的工作。内燃机的发展可以从两个方向来看:技术的变化导致这种发动机的效率提高,第二个方向与废气排放的限制有关。目前的工作属于研究兴趣的第二个方向,涉及内燃机各种工况的分析。静态和动态的运行状态决定了内燃机的运行特性,如燃料和能源消耗以及污染物排放。到目前为止,这种操作条件只在各种认证测试中映射在底盘测功机上。型式核准试验的过程是已知的,测量条件也是已知的,因此不可能在这种试验中引入随机因素。目前,这些特性是在真实车辆运行条件下进行的测试中确定的- RDE(真实驾驶排放)。这些试验代表了机动车辆的真实运行条件。在实际交通条件下进行试验的限制,除了有关各个部件的持续时间和距离的正式要求外,还包括由车辆的速度和加速度决定的车辆的动态条件。该研究分析了RDE测试中车速过程和发动机运行状态的特性,并考虑了其各个阶段——城市、农村和高速公路条件下的驾驶。发动机运行状态是发动机转速及其相对转矩的过程。研究发现,车速过程的动态特性比发动机工作状态的动态特性更为重要。研究还发现,RDE试验中道路污染物的排放,即试验中所测车辆的性能,对高速公路相性能影响最大。
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来源期刊
Archives of Transport
Archives of Transport Engineering-Automotive Engineering
CiteScore
2.50
自引率
0.00%
发文量
26
审稿时长
24 weeks
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