首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >An effective experimental method for identifying radiated noise of different angular ranges for the rolling-piston compressor
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An effective experimental method for identifying radiated noise of different angular ranges for the rolling-piston compressor

机译:确定滚动活塞压缩机不同角度范围辐射噪声的有效实验方法

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摘要

In the traditional analysis method of noise signals, it is very difficult to relate the overall noise from compressors to the angular position. The experimental method of separating the overall noise of different angular ranges is carried out at the real conditions. The starting position of the rotary piston is labelled with vane displacement and the test signals are synchronously sampled. Experimental results are analysed through fast Fourier transform method based on different angular ranges, which displays the following useful conclusions. The experiment technology could effectively identify the angular ranges for the frequency bands with prominent noise level; for the experimental rolling-piston compressor, the vibration, and sound pressure level of the discharge process (210-360 angular degrees) are the largest above the frequency 500 Hz. The discharge process is divided into three parts, where the final part contributes a little to the overall noise level when compared with the other two stages. Pressure pulsation is an important source of vibration and noise and its suppression of peak frequencies is the key of low-noise design of the compressor.
机译:在传统的噪声信号分析方法中,很难将压缩机的总噪声与角位置相关联。在实际条件下进行了分离不同角度范围的整体噪声的实验方法。旋转活塞的起始位置标有叶片位移,并同步采样测试信号。通过基于不同角度范围的快速傅立叶变换方法对实验结果进行了分析,得出以下有益的结论。实验技术可以有效地识别出噪声水平明显的频段的角度范围。对于实验性的滚动活塞式压缩机,在频率500 Hz以上时,排气过程的振动和声压级(210-360角度)最大。放电过程分为三个部分,与其他两个阶段相比,最后一个部分对总体噪声水平的影响很小。压力脉动是振动和噪声的重要来源,其抑制峰值频率是压缩机低噪声设计的关键。

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