珊瑚礁探测与量化的声学测量与生物模型

Q2 Physics and Astronomy
H. Manik
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引用次数: 6

摘要

珊瑚礁是海岸资源,对海洋生态系统非常有用。如今,由于爆破捕鱼、珊瑚开采、海洋沉积、污染和全球气候变化等活动,珊瑚礁的生存受到严重威胁。为了确定珊瑚礁的存在,有必要对它们进行全面的研究。提出了一种利用声波传播来研究珊瑚礁的方法。本研究利用声学仪器和Biot理论的数值模拟对珊瑚礁的反射系数、透射系数、声后向散射、硬度和粗糙度进行了测量。结果表明,声波后向散射的量化可以对珊瑚礁类型进行分类。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Acoustical Measurement and Biot Model for Coral Reef Detection and Quantification
Coral reefs are coastal resources and very useful for marine ecosystems. Nowadays, the existence of coral reefs is seriously threatened due to the activities of blast fishing, coral mining, marine sedimentation, pollution, and global climate change. To determine the existence of coral reefs, it is necessary to study them comprehensively. One method to study a coral reef by using a propagation of sound waves is proposed. In this research, the measurement of reflection coefficient, transmission coefficient, acoustic backscattering, hardness, and roughness of coral reefs has been conducted using acoustic instruments and numerical modeling using Biot theory. The results showed that the quantification of the acoustic backscatter can classify the type of coral reef.
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期刊介绍: The aim of Advances in Acoustics and Vibration is to act as a platform for dissemination of innovative and original research and development work in the area of acoustics and vibration. The target audience of the journal comprises both researchers and practitioners. Articles with innovative works of theoretical and/or experimental nature with research and/or application focus can be considered for publication in the journal. Articles submitted for publication in Advances in Acoustics and Vibration must neither have been published previously nor be under consideration elsewhere. Subject areas include (but are not limited to): Active, semi-active, passive and combined active-passive noise and vibration control Acoustic signal processing Aero-acoustics and aviation noise Architectural acoustics Audio acoustics, mechanisms of human hearing, musical acoustics Community and environmental acoustics and vibration Computational acoustics, numerical techniques Condition monitoring, health diagnostics, vibration testing, non-destructive testing Human response to sound and vibration, Occupational noise exposure and control Industrial, machinery, transportation noise and vibration Low, mid, and high frequency noise and vibration Materials for noise and vibration control Measurement and actuation techniques, sensors, actuators Modal analysis, statistical energy analysis, wavelet analysis, inverse methods Non-linear acoustics and vibration Sound and vibration sources, source localisation, sound propagation Underwater and ship acoustics Vibro-acoustics and shock.
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