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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Diesel Engine Combustion Sensing Methodology Based on Vibration Analysis
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Diesel Engine Combustion Sensing Methodology Based on Vibration Analysis

机译:基于振动分析的柴油机燃烧传感方法

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摘要

The increasing request for pollutant emissions reduction spawned a great deal of research in the field of combustion control and monitoring. As a matter of fact, newly developed low temperature combustion strategies for diesel engines allow obtaining a significant reduction both in paniculate matter and NO_x emissions, combining the use of high EGR rates with a proper injection strategy. Unfortunately, due to their nature, these innovative combustion strategies are very sensitive to in-cylinder thermal conditions. Therefore, in order to obtain a stable combustion, a closed-loop combustion control methodology is needed. Many works demonstrate that a closed-loop combustion control strategy can be based on real-time analysis of in-cylinder pressure trace that provides important information about the combustion process, such as start of combustion, center of combustion and torque delivered by each cylinder. Nevertheless, cylinder pressure sensors on-board installation is still uncommon, due to problems related to unsatisfactory measurement long term reliability and cost. This paper presents a newly developed approach that allows extracting information about combustion effectiveness through the analysis of engine vibrations. In particular, the developed methodology can be used to obtain an accurate estimation of the indicated quantities of interest combining the information provided by engine speed fluctuations measurement and by the signals coming from acceleration transducers mounted on the engine. This paper also reports the results obtained applying the whole methodology to a light-duty turbocharged common rail diesel engine.
机译:对减少污染物排放的日益增长的需求催生了燃烧控制和监测领域的大量研究。事实上,新开发的柴油发动机低温燃烧策略可将大颗粒物和NO_x排放量显着降低,同时将高EGR率与适当的喷射策略结合使用。不幸的是,由于其性质,这些创新的燃烧策略对缸内热工况非常敏感。因此,为了获得稳定的燃烧,需要闭环燃烧控制方法。许多工作表明,闭环燃烧控制策略可以基于缸内压力轨迹的实时分析,该分析提供有关燃烧过程的重要信息,例如燃烧开始,燃烧中心和每个气缸传递的扭矩。然而,由于与长期测量的可靠性和成本不满意有关的问题,机载气缸压力传感器的安装仍然不常见。本文提出了一种新开发的方法,该方法允许通过分析发动机振动来提取有关燃烧效率的信息。特别地,结合发动机转速波动测量和安装在发动机上的加速度传感器发出的信号所提供的信息,可以使用所开发的方法对指示的目标数量进行准确的估算。本文还报告了将整个方法应用于轻型涡轮增压共轨柴油发动机的结果。

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