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首页> 外文期刊>Canadian Journal of Fisheries and Aquatic Sciences >Accounting for biological and physical sources of acoustic backscatter improves estimates of zooplankton biomas
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Accounting for biological and physical sources of acoustic backscatter improves estimates of zooplankton biomas

机译:声学反向散射的生物和物理来源的会计处理可以改善浮游生物生物量的估计

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摘要

To convert measurements of backscattered acoustic energy to estimates of abundance and taxonomic information about the zooplankton community, all of the scattering processes in the water column need to be identified and their scattering contributions quantified. Zooplankton populations in the eastern edge of Wilkinson Basin in the Gulf of Maine in the Northwest Atlantic were surveyed in October 1997. Net tow samples at different depths, temperature and salinity profiles, and multiple frequency acoustic backscatter measurements from the upper 200 m of the water column were collected. Zooplankton samples were identified, enumerated, and measured. Temperature and salinity profiles were used to estimate the amount of turbulent microstructure in the water column. These data sets were used with theoretical acoustic scattering models to calculate the contributions of both biological and physical scatterers to the overall measured scattering level. The output of these predictions shows that the dominant source of acoustic backscatter varies with depth and acoustic frequency in this region. By quantifying the contributions from multiple scattering sources, acoustic backscatter becomes a better measure of net-collected zooplankton biomass.
机译:要将反向散射声能的测量值转换为浮游动物群落的丰度和生物分类信息的估计值,必须确定水柱中的所有散射过程,并量化其散射贡献。 1997年10月对西北大西洋缅因州湾威尔金森盆地东缘的浮游动物种群进行了调查。在水深200 m以内的不同深度,温度和盐度剖面以及多频声反向散射测量结果中的净丝束样本列被收集。浮游动物样品被鉴定,计数和测量。温度和盐度曲线用于估计水柱中湍流微结构的数量。这些数据集与理论声散射模型一起使用,以计算生物散射体和物理散射体对总体测得散射水平的贡献。这些预测的输出表明,在该区域中,声学反向散射的主要来源随深度和声频而变化。通过量化来自多个散射源的贡献,声后向散射成为净收集的浮游生物量的更好度量。

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