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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Comparison of Cylinder Pressure Measurements on a Heavy-Duty Diesel Engine Using a Switching Adapter
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Comparison of Cylinder Pressure Measurements on a Heavy-Duty Diesel Engine Using a Switching Adapter

机译:使用开关适配器在重型柴油机上缸压测量的比较

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In this study, a variety of piezoelectric pressure transducer designs and mounting configurations were compared for measuring in-cylinder pressure on a heavy-duty single-cylinder diesel engine. A unique cylinder head design was used which allowed cylinder pressure to be measured simultaneously in two locations. In one location, various piezoelectric pressure transducers and mounting configurations were studied. In the other location, a Kistler water-cooled switching adapter with a piezoresistive pressure sensor was used. The switching adapter measured in-cylinder pressure during the low-pressure portion of the cycle. During the high-pressure portion of the cycle the sensor is protected from the high-pressure and high-temperature gases in the cylinder. Therefore, the piezoresistive sensor measured in-cylinder pressure highly accurately, without the impacts of short-term thermal drift, otherwise known as thermal shock. Additionally, the piezoresistive sensor is an absolute pressure sensor which does not require a baseline or "pegging" on every engine cycle. With this measurement setup, the amount of thermal shock and induced measurement variability was accurately assessed for the piezoelectric sensors. Data analysis techniques for quantifying the accuracy of a piezoelectric cylinder pressure measurement are also presented and discussed. It was observed that all the piezoelectric transducers investigated yielded very similar results regarding compression pressure, start of combustion, peak cylinder pressure, and the overall heat release rate shape. Differences emerged when studying the impact of the transducer mounting (e.g., recessed versus flush-mount). Recessed-mount transducers tended to yield a more accurate measurement of the cycle-to-cycle variability when compared to the baseline piezoresistive sensor. This is thought to be due to reduced levels of thermal shock, which can vary from cycle-to-cycle.
机译:在这项研究中,比较了各种压电压力传感器的设计和安装配置,以测量重型单缸柴油发动机的缸内压力。采用了独特的气缸盖设计,可以在两个位置同时测量气缸压力。在一个地方,研究了各种压电压力传感器和安装配置。在另一个位置,使用了带有压阻式压力传感器的奇石乐水冷式开关适配器。开关适配器在循环的低压部分测量缸内压力。在循环的高压部分,保护传感器不受气缸内的高压和高温气体的影响。因此,压阻传感器可以非常精确地测量缸内压力,而不会受到短期热漂移(也称为热冲击)的影响。另外,压阻传感器是绝对压力传感器,它不需要在每个发动机循环中都具有基线或“固定”。通过这种测量设置,可以准确评估压电传感器的热冲击量和感应的测量变异性。还介绍和讨论了用于量化压电缸压力测量精度的数据分析技术。观察到,所有研究的压电换能器在压缩压力,燃烧开始,峰值气缸压力和总体放热速率形状方面都产生了非常相似的结果。在研究换能器安装的影响时(例如,凹入式安装与平装式),会出现差异。与基线压阻传感器相比,嵌入式传感器倾向于对周期变化进行更准确的测量。据认为,这是由于热冲击水平降低所致,而热冲击水平可能因周期而异。

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