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Time-Frequency Analysis of Pressure Pulsation Signal in the Chamber of Self-Resonating Jet Nozzle

机译:自谐振射流喷嘴腔内压力脉动信号的时频分析

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In this paper, time-frequency (TF) characteristics of pressure pulsation in the self-resonating jet nozzle were thoroughly checked and analyzed by two TF analysis methods. The frequency spectrum including frequency-domain structure and approximate frequency-scope was obtained via the classical fast Fourier transform (FFT) method. Due to the typical nonstationary and time-varying nature, the FFT method is inefficient in analyzing such signals. TF analysis method was introduced to obtain the accurate instantaneous frequency (IF) of the self-resonating jet signal, which makes the quantitative analysis of the resonance frequency possible. In addition, a comparative study on the IF results were carried out by coupling the Morlet wavelet transforms, synchrosqueezed wavelet transforms (SWTs) and the modulus maximum methods together, and the coherence of frequency-domain structure was demonstrated. The result showed that SWT is good at acquiring the frequency distribution of the self-resonating jet with high readability and accuracy, and the TF analysis method is suitable for researching jet nozzle's TF characteristics with high efficiency.
机译:本文通过两种TF分析方法对自谐振喷嘴中压力脉动的时频(TF)特性进行了彻底检查和分析。通过经典的快速傅里叶变换(FFT)方法获得了包括频域结构和近似频谱在内的频谱。由于典型的非平稳且随时间变化的性质,FFT方法在分析此类信号时效率低下。引入了TF分析方法来获得自谐振射流信号的准确瞬时频率(IF),这使得定量分析谐振频率成为可能。此外,通过将Morlet小波变换,同步压缩小波变换(SWT)和模数最大值方法结合在一起,对中频结果进行了比较研究,并证明了频域结构的相干性。结果表明,SWT具有良好的可读性和准确性,能够很好地获取自谐振射流的频率分布,TF分析方法适用于高效研究射流喷嘴的TF特性。

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