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Depth Profiling Ambient Noise in the Deep Ocean.

机译:深度剖析深海环境噪声。

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摘要

Deep Sound is an un-tethered, free-falling acoustic platform designed to profile the ambient noise field in the ocean from the surface to a pre-programmed depth, at which point a ballast weight is dropped and the instrument returns to the surface under its own buoyancy. Three iterations of the instrument, Mk I, II and III, have been designed, built and tested, the first two rated to descend to 9 km and the third to a full ocean depth of 11 km. During a deployment of the instrument, vertically and horizontally spaced hydrophones continuously record the ambient noise pressure time series over a large bandwidth (5 Hz -- 40 kHz), returning the power spectral density, vertical and horizontal coherence as a function of depth. Deep Sound Mk I and Mk II have been deployed down to 9 km depth in the Mariana Trench and Mk I has descended three times to 5 km, 5.5 km and 6 km in the Philippine Sea. The data reported here examines the depth-dependence of the power spectrum, vertical coherence and directionality of rain and wind noise in the Philippine Sea. Acoustic estimates of rainfall rates and wind speeds are made from the surface to 5.5 km and 6 km respectively and compared to surface meteorological measurements. The depth-dependence of the accuracy of these estimates is relatively small and found to improve with depth. A coherence fitting procedure is employed to return ambient noise directionality and provide information on the spatial variability of an overhead rainstorm. With moderate 7-10 m/s winds, downward propagating noise from directly overhead dominates the noise field directionality from the surface to 6 km. Using the wind generated surface noise and the depth dependence of the spectral slope over the band 1 -- 10 kHz, the frequency dependence of the absorption due to sea water is estimated and used to infer a mean water column value of pH.
机译:Deep Sound是一种不受束缚的,自由落体的声学平台,旨在将海洋中从表层到预编程深度的环境噪声场进行剖析,此时,压载物被放下,乐器回到其下方的水面。自己的浮力。已经设计,制造和测试了该仪器的三个迭代,即Mk I,II和III,其中前两次降落到9 km,第三次降落到11 km的整个海洋深度。在部署仪器期间,垂直和水平间隔的水听器连续记录大带宽(5 Hz-40 kHz)上的环境噪声压力时间序列,并返回功率谱密度,垂直和水平相干性随深度的变化。在马里亚纳海沟,Mk I和Mk II深度潜艇的深度已降至9公里,而在菲律宾海,Mk I下降了3倍,分别为5公里,5.5公里和6公里。此处报告的数据检查了菲律宾海中功率谱的深度依赖性,垂直相干性以及雨和风噪声的方向性。分别从地表到5.5 km和6 km的降雨率和风速进行声学估计,并与地面气象测量结果进行比较。这些估计的准确性的深度依赖性相对较小,并且发现随着深度的增加而改善。相干拟合过程用于返回环境噪声的方向性,并提供有关头顶暴雨的空间变异性的信息。当风速为7-10 m / s时,直接在头顶上方传播的噪声占主导地位,从表面到6 km的噪声场方向性。利用风力产生的表面噪声和1-10 kHz频带上光谱斜率的深度相关性,可以估算出由于海水引起的吸收的频率相关性,并可以用来推断平均水柱pH值。

著录项

  • 作者

    Barclay, David Readshaw.;

  • 作者单位

    University of California, San Diego.;

  • 授予单位 University of California, San Diego.;
  • 学科 Physical Oceanography.;Physics Acoustics.;Engineering Marine and Ocean.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 127 p.
  • 总页数 127
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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