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首页> 外文期刊>Continental Shelf Research: A Companion Journal to Deep-Sea Research and Progress in Oceanography >Variability in normal-incidence acoustic response in shallow-water marine sediments
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Variability in normal-incidence acoustic response in shallow-water marine sediments

机译:浅水海洋沉积物中法向入射声响应的变化

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Lateral variations in mass properties of sediments (grain density, porosity, and composition) occur at many spatial scales in all types of sediments. Sediment bulk properties determine elasticity and density and, therefore, the degree of acoustic response. Variations in properties and processes limit the potential of using acoustic response to differentiate sediment types. Small changes in one or more properties can produce a wide variation in the acoustic response, and empirical curve fitting most often serves as models for these relationships. Sedimentary data and acoustic variability at 30 and 50 kHz from three sites in the Mississippi Sound (Lambert et al., 2002) have been further analyzed and compared for the available Shepard sediment classes. Initial observations revealed trends in acoustic variability based on sediment classification. Clustering techniques were used to estimate the central tendency of the sparse set of geoacoustic measurements based on selected combinations of geotechnical parameters. The group-averaged sediment properties (geotechnical, granulometric, and geoacoustical) partially correlate with the acoustic coefficient of variation of the normal-incidence ping-ensemble 50 kHz response. Changes in acoustic fluctuations at 30 and 50 kHz strongly correlate with water content and compositional variations, and are consistent with volume variability and scattering. Published by Elsevier Ltd.
机译:在所有类型的沉积物中,沉积物的质量特性(颗粒密度,孔隙率和组成)的横向变化都发生在许多空间尺度上。沉积物的体积特性决定弹性和密度,并因此决定声学响应的程度。性质和过程的变化限制了使用声学响应区分沉积物类型的潜力。一个或多个属性的微小变化会在声学响应中产生很大的变化,经验曲线拟合最常充当这些关系的模型。已经对来自密西西比海声音中三个地点的沉积数据和30 kHz和50 kHz处的声音变异性(Lambert等,2002)作了进一步分析,并比较了可用的谢泼德沉积物类型。初步观察显示,基于沉积物分类的声学变化趋势。基于选定的岩土参数组合,使用聚类技术来估计稀疏的地声测量集的集中趋势。群体平均的沉积物特性(岩土,粒度和地声)与法向入射平顶集合50 kHz响应的声变异系数部分相关。 30和50 kHz处的声学波动变化与水含量和成分变化密切相关,并且与体积变化和散射一致。由Elsevier Ltd.发布

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