噪音(视频)
北极的
北极冰盖
海冰
环境噪声级
地质学
环境科学
海冰厚度
海冰浓度
气象学
大气科学
气候学
海洋学
声音(地理)
物理
计算机科学
图像(数学)
人工智能
作者
Xueli Sheng,Chaoping Dong,Longxiang Guo,Jingwei Yin
出处
期刊:Journal of the Acoustical Society of America
[Acoustical Society of America]
日期:2021-10-01
卷期号:150 (4): 3074-3084
被引量:4
摘要
Sea ice and freshwater ice can be different in terms of physical and acoustic characteristics, such as density, salinity, etc. In this paper, under-ice ambient noise in the Mudan river (Jilin Province, Northeast of China) is analyzed using the data recorded by autonomous hydrophones to test if the river ice environment is an effective analog for studying under-ice noise of multi-year ice sheets in the Arctic. The noise spectrum level below 250 Hz and above 1 kHz decreases linearly with the increase in the logarithmic frequency in a quiet environment. The ice cracks are detected and extracted, and Pearson correlation analysis between meteorological information and cracks is carried out. Frequency correlation matrixes are calculated to obtain the correlation between pairs of frequencies and evaluate the frequency correlation of ice crack noise of two hydrophones under different depths, different distances, and different times. Finally, the paper compares the experimental results with Arctic under-ice noise in the literature. Similarities with Arctic under-ice noise are observed in the experiment, including noise spectrum, cracks' peak frequency, and correlations between temperature and crack intensity. This paper believes that the study of under-ice noise in freshwater rivers can be used to simulate multi-year ice regions in the Arctic in terms of thermal-induced cracks and meteorological correlation. And future research is needed to prove this judgment further.
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