不同盐度和温度条件下小型水下试验箱水声传播特性研究

N. P. Yuwono, D. Arifianto, E. Widjiati, Wirawan
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引用次数: 10

摘要

本文报道了水声通信用水箱的研制进展。与大多数水下试验水箱相比,该水箱的尺寸可以认为是迷你的。然而,试验舱打算作为受控环境,在海上全尺寸试验之前发展理论模型和实验验证。我们介绍了如何分析试验槽的物理特性,关于盐度和温度对传播波的速度和模式的影响。我们设计了一个12mm厚的2 × 1 × 1米尺寸的玻璃测试箱,然后在墙内放置波纹海绵,以减少我们产生的信号的回波。在15°C、20°C、25°C和30°C不同温度的淡水中,通过放置水听器阵列对传播波进行测量,模拟水深。在盐度方面,我们在室温30°C下固定,盐度分别为3.1%、3.2%、3.3%、3.4%和3.5%。结果表明,声传播特性与前人的研究基本一致。这表明该试验箱可作为可控环境下的小型水声实验。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Underwater sound propagation characteristics at mini underwater test tank with varied salinity and temperature
In this paper, we report the development of water tank for underwater acoustic communication. Compared to most of underwater test tank, the tank may be considered as mini in term of its size. However, the test tank is intended to serve as controlled environment to develop a theoretical model and its validation experimentally before full-scale test at sea. We present on how to analyze the physical characteristics of the test tank with respect to salinity and temperature affected to speed and pattern of propagation waves. We designed the test tank made of 12mm thick of glass with dimension 2 × 1 × 1 in meter, then we placed corrugated sponges inside the walls to reduce the echo from signal that we generated. The measurements were conducted by placing array of hydrophones and analyze the propagating waves in fresh water with variation temperature 15°C, 20°C, 25°C and 30°C to simulate depth. In term of salinity we fixed at room temperature 30°C and varied the salinity of 3.1%, 3.2% 3.3%, 3.4% and 3.5%, respectively. The results showed that the sound propagation characteristics are in agreement with previous studies. This may suggest that the test tank may serve as small scale underwater acoustic experiment with controlled environment.
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