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Low RON Gasoline Calibration on a Multi-Cylinder Compression Ignition Engine to Fulfill the Euro 6d Regulation

机译:低ron汽油校准在多缸压缩点火发动机上,以满足欧元6D调节

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Reducing the CO_2 footprint, limiting the pollutant emissions and rebalancing the ongoing shift demand toward middle-distillate fuels are major concerns for vehicle manufacturers and oil refiners. In this context, gasoline-like fuels have been recently identified as good candidates. Straight run naphtha, a refinery stream derived from the atmospheric crude oil distillation process, allows for a reduction of both NO_x and particulate emissions when used in compression-ignition engines. CO_2 benefits are also expected thanks to naphtha's higher H/C ratio and energy content compared to diesel. In previous studies, wide ranges of Cetane Number (CN) naphtha fuels have been evaluated and CN 35 naphtha fuel has been selected. The assessment and the choice of the required engine hardware adapted to this fuel, such as the compression ratio, bowl pattern, nozzle design and air-path technology, have been performed on a light-duty single cylinder compression-ignition engine. The purpose of this paper is to demonstrate the potential of a recalibrated light-duty multi-cylinder compression-ignition engine running with CN 35 naphtha fuel with the just necessary engine and after-treatment hardware modification. The implementation of a specific global Design of Experiment (DoE) methodology developed by IFPEN was applied in steady-state conditions to calibrate the engine. The behavior of an after-treatment exhaust line (ATS) with DOC, DPF and SCR systems, was evaluated by 0D simulation. To be compliant with the Euro 6d regulation, several DoEs, considering the coolant temperature were performed to fully cover the WLTC cycle range and models representing the engine behavior in a large part of the engine map were then created. The Euro 6 regulation was met with a reduction of almost 7% of CO_2 on WLTC, using a Euro 6 diesel like ATS design. Noise levels were comparable to a Euro 5 diesel reference engine. Different ATS efficiencies were also assessed with a significant impact on the CO_2 potential. Engine calibration and after-treatment are, de facto, strongly linked.
机译:减少CO_2占地面积,限制污染物排放和重新平衡中馏分燃料的持续转变需求是车辆制造商和炼油厂的主要问题。在这种情况下,最近被认为是良好的候选人的汽油状燃料。直馏石脑油,来自常压原油蒸馏油过程得到的精炼流,允许减少两者中NO_x和微粒排放的在压缩点火发动机中使用时。由于与柴油相比,由于石脑油的H / C比率和能量含量,也预期了CO_2益处。在先前的研究中,已经评估了宽范围的十六烷数(CN)石脑油燃料,并选择了CN 35石脑油燃料。已经在轻型单缸压缩 - 点火发动机上执行了评估和适用于这种燃料的所需发动机硬件,例如压缩比,碗形图案,喷嘴设计和空路技术。本文的目的是展示通过刚刚必要的发动机和后处理硬件改性的CN 35石脑油燃料运行的重新校准轻型多缸压缩 - 点火发动机的潜力。通过IFPEN开发的实验(DOE)方法的特定全球设计的实施是应用于稳定状态的稳定状态以校准发动机。通过0D仿真评估了与DOC,DPF和SCR系统的后处理排气管线(ATS)的行为。为了符合欧元6D调节,几乎是考虑到冷却剂温度以完全覆盖的WLTC循环范围,然后产生代表发动机地图的大部分发动机行为的模型。欧元6欧元监管率先降低了近7%的WLTC上的CO_2,使用欧元6柴油如ATS设计。噪声水平与欧元5欧元参考发动机相当。还评估了不同的ATS效率,对CO_2潜力产生了重大影响。发动机校准和后续处理是事实上的,强烈连接。

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