Tian Fenghua, Tian Wenqiang, Liu Yiming, Ma Ruilei, Ding Yongquan, Hao Bao'an
Xi'an Precision Machinery Research Institute, Xi'an 710077, China.
Materials (Basel). 2023 Mar 9;16(6):2199. doi: 10.3390/ma16062199.
In the far-field wake of a ship, the intensity of the scattering of bubbles is relatively weak. In addition, the wake is relatively thin, and the hole phenomenon is prominent. Thus, it is difficult to detect the wake at a long distance. On this basis, this paper studies a broadband 1-3 high-performance composite transceiver sub-array for the improved detection of a ship's far wake flow field. The content includes frequency characteristics, transmission performance, power tolerance, the beam width of the transmitting array, and the frequency characteristics, reception performance, and beam width of the receiving array. The frequency bandwidth of the transmission array developed in this paper can reach a value of 180 kHz (the center frequency is 390 kHz). The maximum sound source level can reach a value of 228 dB. In the same frequency band, the sensitivity of the receiving array can reach a value of 184 dB, and the fluctuation is less than 5 dB. Compared with the narrowband 1-3 composite array of the same size, the acoustic performance of this sub-array has obvious advantages. Finally, to improve the effective sound path (before the first interface reflection of the sound wave) of the emitted sound wave in the ship's far-field wake, combined with the speed of the moving carrier and the wide-band detection method of the ship's wake, the configuration method of the detection array for the width and direction of the ship's far-field wake is proposed. The results of this research have an important reference value for the research on broadband 1-3 high-performance composite arrays and their application in the far-field wake detection of ships.
在船舶的远场尾流中,气泡散射的强度相对较弱。此外,尾流相对较薄,空洞现象较为突出。因此,远距离探测尾流较为困难。在此基础上,本文研究了一种宽带1-3高性能复合收发子阵列,用于改进对船舶远场尾流流场的探测。内容包括频率特性、发射性能、功率容限、发射阵列的波束宽度,以及接收阵列的频率特性、接收性能和波束宽度。本文研制的发射阵列频率带宽可达180kHz(中心频率为390kHz)。最大声源级可达228dB。在同一频段内,接收阵列的灵敏度可达184dB,波动小于5dB。与相同尺寸的窄带1-3复合阵列相比,该子阵列的声学性能具有明显优势。最后,为了提高发射声波在船舶远场尾流中的有效声程(声波首次界面反射前),结合移动载体的速度和船舶尾流的宽带探测方法,提出了船舶远场尾流宽度和方向探测阵列的配置方法。本研究结果对宽带1-3高性能复合阵列及其在船舶远场尾流探测中的应用研究具有重要参考价值。