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Effectiveness of acoustical backscatter measurements from acoustical profilers for estimation of suspended sediment concentration

机译:声学剖面仪测量声学反向散射对估算悬浮泥沙浓度的有效性

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In this paper the effectiveness of an approach proposed by Deines [1] for conversion of acoustic backscatter to suspended sediment concentration is verified with measurement data carried out in a tidal flat region of the German North Sea. Extensive measurement data using a 1200 kHz Direct Reading Broadband Acoustic Doppler Current Profiler (ADCP) from a moving vessel were considered. Field conditions with water depths varying from 5 to 20m, depth-averaged current velocities up to 1.4m/s and suspended sediment concentration up to 1350mg/l were covered. Acoustical profiling and optical transmission sampling of suspended sediment concentration over the depth were carried out in more than 200 locations. Comparisons between suspended sediment concentration profiles obtained by converting acoustic backscatter and optical transmission sampling were considered to verify the effectiveness of the approach. The effect of various parameters on the resulting suspended sediment concentration was investigated. The agreement between the concentrations obtained on. the basis of optical and acoustical devices is quite good. Considering the reference concentration values at mid-depth, 97% of the results based on the acoustical measurement lie within a factor of 2 with respect to the ones obtained from the optical sampler.
机译:在本文中,由Deines [1]提出的将声学反向散射转换为悬浮沉积物浓度的方法的有效性已通过在德国北海的潮滩地区进行的测量数据得到了验证。考虑了使用来自移动船只的1200 kHz直读宽带声学多普勒电流剖面仪(ADCP)的大量测量数据。涵盖了水深从5到20m,深度平均流速高达1.4m / s,悬浮沉积物浓度高达1350mg / l的田间条件。在200多个位置进行了深度分布的悬浮泥沙浓度的声波分布图和光学透射采样。通过转换声后向散射和光传输采样获得的悬浮沉积物浓度剖面之间的比较被认为可以验证该方法的有效性。研究了各种参数对所产生的悬浮沉积物浓度的影响。所获得的浓度之间的一致性。光学和声学设备的基础是相当好的。考虑到中深处的参考浓度值,基于声学测量的结果的97%相对于从光学采样器获得的结果在2倍之内。

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