Bie Hai-Yan, Ye Jian-Jun, Hao Zong-Rui
College of Chemistry and Chemical Engineering, Ocean University of China, Qingdao, China.
School of Power and Engineering, Huazhong University of Science and Technology, Wuhan, China.
J Lab Autom. 2016 Oct;21(5):652-9. doi: 10.1177/2211068215584902. Epub 2015 Apr 30.
Submerged exhaust noise is one of the main noise sources of underwater vehicles. The nozzle features of pipe discharging systems have a great influence on exhaust noise, especially on the noise produced by gas-liquid two-phase flow outside the nozzle. To study the influence of nozzle geometry on underwater jet noises, a theoretical study was performed on the critical weber number at which the jet flow field morphology changes. The underwater jet noise experiments of different nozzles under various working conditions were carried out. The experimental results implied that the critical weber number at which the jet flow transformed from bubbling regime to jetting regime was basically identical with the theoretical analysis. In the condition of jetting regime, the generated cavity of elliptical and triangular nozzles was smaller than that of the circular nozzle, and the middle- and high-frequency bands increased nonlinearly. The radiated noise decreased with the decrease in nozzle diameter. Combined with theoretical analysis and experimental research, three different submerged exhaust noise reduction devices were designed, and the validation tests proved that the noise reduction device with folds and diversion cone was the most effective.
水下排气噪声是水下航行器的主要噪声源之一。管道排放系统的喷嘴特性对排气噪声有很大影响,特别是对喷嘴外气液两相流产生的噪声。为了研究喷嘴几何形状对水下射流噪声的影响,对射流流场形态发生变化时的临界韦伯数进行了理论研究。开展了不同喷嘴在各种工况下的水下射流噪声实验。实验结果表明,射流从鼓泡状态转变为喷射状态时的临界韦伯数与理论分析基本一致。在喷射状态下,椭圆形和三角形喷嘴产生的空泡比圆形喷嘴的小,中高频段呈非线性增加。辐射噪声随喷嘴直径的减小而降低。结合理论分析和实验研究,设计了三种不同的水下排气降噪装置,验证试验证明带有折板和导流锥的降噪装置效果最为显著。