首页> 外文会议>ASME Internal Combustion Engine Division spring technical conference 2012.;Large bore engines ... >ASSESSMENT OF A LOW-THROUGHPUT PREDICTIVE MODEL FOR INDICATED CYCLE, COMBUSTION NOISE AND NO_x CALCULATION IN DIESEL ENGINES IN STEADY-STATE AND TRANSIENT OPERATIONS
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ASSESSMENT OF A LOW-THROUGHPUT PREDICTIVE MODEL FOR INDICATED CYCLE, COMBUSTION NOISE AND NO_x CALCULATION IN DIESEL ENGINES IN STEADY-STATE AND TRANSIENT OPERATIONS

机译:稳态和瞬态运行中柴油机指示循环,燃烧噪声和NO_x计算的低通量预测模型的评估

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A predictive zero-dimensional low-throughput combustion model that was previously developed by the authors has been refined and applied to a EURO V diesel automotive engine. The model is capable of simulating, in real time, the time-histories of the HRR (Heat Release Rate), in-cylinder pressure, in-cylinder temperatures and NO_x (nitrogen oxides) concentrations, on the basis of a few quantities estimated by the ECU (Engine Control Unit), such as the injection parameters, the trapped air mass , the intake manifold pressure and temperature. It has been developed for model-based feedforward control purposes in DI (Direct Injection) diesel engines featuring an advanced combustion system or new combustion-mode concepts, such as LTC/PCCI (Low Temperature Combustion/Premixed Charge Compression Ignition) engines. In the present work, the model has been assessed in detail by analyzing a wide set of experimental engine data that were acquired during the engine calibration phase. The experimental data set has been defined according to the DoE (Design of Experiment) methodology currently used for engine calibration purposes, and applied to six 'key-points' that are representative of engine working operations during an NEDC (New European Driving Cycle) for a D-class passenger car. Different injection strategies (pilot-main, double pilot-main; pilot-main-after; double pilot-main-after) have been considered for each key point, and all the main engine operating parameters (rail pressure, injected quantities, boost level, intake temperature, EGR rate, ...) have been included in the DoE variation list. Therefore, about 1000 steady-state engine operating conditions have been investigated. In addition, several NEDC driving cycles have been realized with the engine installed on a dynamic test rig, and the combustion parameters and emission levels have continuously been measured during the transient operations. The model has been applied to all the investigated conditions. It has shown excellent accuracy in estimating the values of the main combustion parameters, and a good matching between the calculated and predicted NO_x concentrations was found, for both steady-state and transient operations.
机译:作者先前开发的预测性零维低通量燃烧模型已经过完善,并已应用于EURO V柴油汽车发动机。该模型能够根据以下公式估算的一些量实时模拟HRR(放热率),缸内压力,缸内温度和NO_x(氮氧化物)浓度的时间历史。 ECU(发动机控制单元),例如喷射参数,滞留的空气质量,进气歧管压力和温度。它已开发用于具有先进燃烧系统或新型燃烧模式概念(例如LTC / PCCI(低温燃烧/预混合增压压缩点火)发动机)的DI(直接喷射)柴油发动机中基于模型的前馈控制目的。在当前工作中,通过分析在发动机校准阶段获取的大量实验发动机数据,对模型进行了详细评估。实验数据集已根据当前用于发动机校准目的的DoE(实验设计)方法进行了定义,并已应用于代表NEDC(新欧洲行驶周期)期间发动机工作操作的六个“关键点”, D级乘用车对于每个关键点,已经考虑了不同的喷射策略(先导主,先导双主;后先导主;后先导主双),并考虑了所有主机的主要工作参数(导轨压力,喷射量,升压水平) ,进气温度,EGR率...)已包含在DoE变化列表中。因此,已经研究了大约1000种稳态发动机工况。此外,将发动机安装在动态试验台上已经实现了多个NEDC行驶周期,并且在过渡运行期间连续测量了燃烧参数和排放水平。该模型已应用于所有调查条件。在估算主要燃烧参数的值时,它显示出极好的准确性,并且在稳态和瞬态运行中都发现了计算得出的NO_x和预测NO_x浓度之间的良好匹配。

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