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Sound Intensity Mapping of an Engine Dynamometer

机译:发动机测功机的声强映射

摘要

This paper presents an investigation of the noise source identification (NSI) in a diesel engine at different engine speeds. An experiment was conducted utilizing an eddyudcurrent dynamometer with a sound intensity mapping method for the engine speed range of 1500 rpm to 2000 rpm. The noise source of the flywheel cover and manifold areudpresented. It can be observed that the critical cut-off frequency is 1250 Hz. The sound level powers are within the range of 86.42 dB to 96.34 dB in varying engine speeds.udFurther, the noise level is found to be increasing with engine speed. Another main source of vibration is engine mounting, which has a significant effect on noise level dueudto the engine’s structural vibration transfer and noise radiation behavior with respect to the excitation mechanism. The noise power level for mounting is within the range of 77.17 dB to 89.96 dB for an engine speed of 1500 rpm to 2000 rpm. This method can be applied on-site rather than in an anechoic chamber as long as the background noises are stationary. The project delivers a reliable input for the engineering practice to reduce engine noise level.ud
机译:本文介绍了柴油机在不同转速下的噪声源识别(NSI)。利用涡流测功机和声强图法对发动机转速在1500 rpm至2000 rpm的范围进行了实验。飞轮盖和歧管的噪声源已标出。可以看出,临界截止频率为1250 Hz。在不同的发动机转速下,声级功率在86.42 dB至96.34 dB的范围内。 ud此外,发现噪声级会随着发动机转速的增加而增加。振动的另一个主要来源是发动机安装,这是由于发动机的结构振动传递和相对于激励机构的噪声辐射行为而对噪声水平有很大影响。对于1500 rpm至2000 rpm的发动机转速,安装时的噪声功率水平在77.17 dB至89.96 dB的范围内。只要背景噪声是固定的,该方法可以在现场而不是在消声室内使用。该项目为工程实践提供了可靠的信息,以降低发动机的噪音水平。 ud

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