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Suspended sediment concentration field quantified from a calibrated MultiBeam EchoSounder

机译:悬浮的沉积物浓度场从校准的多阵列回声符

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摘要

Acoustic scattering can be used to estimate Suspended Sediment Concentration (SSC) through acoustic inversion methods. Current SSC quantification methods are mostly unable to observe both spatial and temporal variations. Here, we assess the possibility to measure both using a Multibeam Echosounder (MBES). MBES combine a large spatial covering in the water column and the capability to measure on route', allowing a better representativity of the measurements. Time-series of raw EM3002-MBES data at 300 kHz were acquired during a 5-hours field experiment at a fixed location in the Aulne macrotidal estuary (France) during ebb, ensuring sufficient SSC variations. Concurrently, 4-frequencies Acoustic Backscattering System (ABS) profiles were acquired in the water column, as well as turbidity profiles, further converted into SSC using collected water samples. An original in-situ calibration was performed on the MBES, using a tungsten sphere of known properties, which allowed corrections to be made to the volume backscattered levels over the echosounder fan. Using ABS-derived equivalent radii, the MBES backscattered signal was inverted to retrieve an SSC estimate. Good consistency between MBES time-series observations and turbidity-derived SSC is observed. This experiment demonstrates the potential use of MBES for 3-dimensional turbidity observations in coastal areas, which is of great interest for sediment flux quantification. (C) 2021 The Authors. Published by Elsevier Ltd.
机译:声学散射可用于通过声反转方法估算悬浮的沉积物浓度(SSC)。目前的SSC量化方法主要无法观察到空间和时间变化。在这里,我们评估了使用多射流回路(MBES)测量的可能性。 MBES将大型空间覆盖物组合在水柱中,并在路线上测量的能力,允许更好的测量值表示。在EBB期间在Aulne Macrotatal extuary(法国)的固定位置,在5小时的田间试验期间获得了300 kHz的RAW EM3002-MBES数据的时间序列,确保了足够的SSC变化。同时,在水柱中获得4频率声学反向散射系统(ABS)型材,以及浊度型材,进一步转化为使用收集的水样的SSC。在MBES上使用已知属性的钨球在MBE上进行原始原位校准,其允许在回声器风扇上对体积反向散射水平进行校正。使用ABS导出的等效半径,将MBES反向散射信号反转以检索SSC估计值。观察MBES时间序列观测和浊度导出的SSC之间的良好一致性。该实验表明,沿海地区的三维浊度观测MBES的潜在使用,这对沉积物磁通量化具有很大的兴趣。 (c)提交人2021年。 elsevier有限公司出版

著录项

  • 来源
    《Applied Acoustics》 |2021年第9期|108107.1-108107.14|共14页
  • 作者单位

    Inst Univ Europeen Mer Lab Geosci Ocean UMR 6538 Rue Dumt Urville F-29280 Plouzane France|Lab Informat Signal & Image Cote dOpale 50 Rue Ferdinand Buisson F-62228 Calais France;

    Inst Univ Europeen Mer Lab Geosci Ocean UMR 6538 Rue Dumt Urville F-29280 Plouzane France|Ctr Etud & Expertise Risques & Environm Mobilite DTecEMF 134 Rue Beauvais F-60280 Margny Les Compiegne France;

    Inst Rechercher Dev Lab & Environm MARin UMR 6539 F-29280 Plouzane France;

    Inst Univ Europeen Mer Lab Geosci Ocean UMR 6538 Rue Dumt Urville F-29280 Plouzane France;

    Inst Rechercher Dev Lab & Environm MARin UMR 6539 F-29280 Plouzane France;

    Inst Univ Europeen Mer Lab Geosci Ocean UMR 6538 Rue Dumt Urville F-29280 Plouzane France;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Acoustic backscattering; Multifrequency acoustics; Suspended sediments concentration; Acoustic inversion; MultiBeam EchoSounder;

    机译:声学反向散射;多频声学;悬浮沉积物集中;声反转;多滨echosounder;

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