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Frequency Modulation and Erosion Performance of a Self-Resonating Jet

机译:自谐振射流的调频和冲蚀性能

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The self-resonating water jet offers the advantages of both a cavitation jet and a pulsed jet, and thus has been widely used for many practical applications. In the present study, the 120° -impinging edge Helmholtz nozzle was investigated for better erosion performance. The oscillating mechanism was analyzed from both numerical and experimental perspectives. The results showed that the cavitation clouds in the chamber dominate the oscillating frequency. The frequency resulting from the non-linear interaction was also observed in the simulation. The dominant frequency increases linearly as pressure decreases without entrained air. The frequency modulation was achieved through various inspiratory methods, and the modulation range was dependent on the pressure drop. The erosion performance was improved with entrained air, and the improvement was effected by the inspiratory method. The oscillating frequency was determined by the forced frequency of entrained air, and the best erosion performance was achieved at the frequency closest to the fundamental frequency. A feasible method to improve the erosion performance was investigated in this preliminary study, which could provide a guide for practical applications.
机译:自谐振水射流同时具有空化射流和脉冲射流的优点,因此已被广泛用于许多实际应用中。在本研究中,对120°撞击边缘的亥姆霍兹喷嘴进行了研究,以获得更好的腐蚀性能。从数值和实验角度分析了振荡机理。结果表明,腔室内的空化云占主导地位的振荡频率。在仿真中还观察到了非线性相互作用产生的频率。在没有夹带空气的情况下,主频率随着压力的降低线性增加。通过各种吸气方法实现了频率调制,并且调制范围取决于压降。夹带空气改善了腐蚀性能,而吸气法则改善了腐蚀性能。振荡频率由夹带空气的强制频率决定,在最接近基频的频率下可获得最佳的腐蚀性能。在这项初步研究中,研究了一种改善腐蚀性能的可行方法,可以为实际应用提供指导。

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