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Measurement and analysis of instantaneous torque and angular velocity variations of a low speed two stroke diesel engine

机译:低速两冲程柴油机瞬时转矩和角速度变化的测量与分析

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摘要

This paper presents an investigation into the potential of using direct measurement of engine torque for diagnostic purposes in large engines - in this case applied to power generation. The procedures for measuring and analyzing the instantaneous torque, the angular displacement on the generator output end and the angular displacement on its free end for a ten-cylinder, low speed two stroke diesel engine are presented. Angular speed oscillations are frequently used for combustion engine diagnostics although they cannot be used to measure engine power directly. In addition, and for engines with huge inertia generators such as those used in power plants, speed oscillations are very low and this reduces the signal to noise ratio and makes the evaluation of the instantaneous angular speed very noisy. In the work described here, torque and angular displacement measurements carried out at the same point and with the same engine conditions are compared and the superior performance of torque is demonstrated. Harmonic analysis of instantaneous torque allowed the identification of the dynamic characteristics of the power train of the diesel group and clearly suggests that this signal can be used as a diagnostic tool for excitation, combustion malfunctions, or for the mechanical characteristics of the system and crankshaft stiffness. The torque distortion introduced by the generator due to the discontinuity imposed by the pole pairs is also observed in the torque signal, suggesting that the torque signal can be used to identify generator malfunction.
机译:本文提出了对直接测量发动机扭矩以进行大型发动机诊断的可能性的研究,在这种情况下,这种发动机可用于发电。介绍了用于十缸低速两冲程柴油机的瞬时转矩,发电机输出端的角位移和自由端的角位移的测量和分析程序。角速度振荡通常用于内燃机诊断,尽管它们不能直接用于测量发动机功率。此外,对于具有巨大惯性发电机的发动机(例如发电厂中使用的发动机),速度振荡非常低,这会降低信噪比,并使瞬时角速度的估算非常嘈杂。在此处描述的工作中,比较了在相同点和相同发动机条件下进行的扭矩和角位移测量,并展示了出色的扭矩性能。瞬时转矩的谐波分析可以识别柴油机动力总成的动态特性,并清楚地表明,该信号可用作激励,燃烧故障或系统机械特性和曲轴刚度的诊断工具。还可以在转矩信号中观察到由于极对造成的不连续性而导致的发电机产生的转矩失真,这表明该转矩信号可用于识别发电机故障。

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