葡萄牙西南海岸冷水细丝的声学反演

P. Felisberto, S. Jesus, P. Relvas
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引用次数: 0

摘要

冷水细丝在近岸和近海海洋间的生物和化学交换中具有重要意义。葡萄牙西南海岸的圣维森特角地区是观察到这种现象的一个众所周知的地区。2004年10月,由海洋学家和声学学家参与的多学科项目“原子”(ATOMS)展开,目的是为海表温度卫星观测提供全面的水柱特征。由于项目海上试验期间的天气和技术条件,仅在水柱上层进行了CTD测量。这些在海上收集的数据与来自NODC数据库的档案数据一起,可以建立该地区三维温度分布的现实场景,包括更深的水层。温度剖面的档案资料表明,其他重要的海洋现象的发生,如温暖的地中海水的俯冲,也应该影响声波传播。借助正演声学模拟,研究了在不同的声学采样策略下,个别海洋现象对声波传播的意义和特征。这些研究允许制定策略来解决这项工作所解决的主要问题:在复杂的环境中,通过声学手段反转冷水灯丝结构,其中声音传播也受到其他重要的海洋和水深特征的影响。由于这项工作的目的是评估对海洋垂直结构进行3D表征的能力,因此假设由船舶的悬浮源和漂流垂直阵列组成的最小收发采集。空间结构是通过对覆盖感兴趣区域的源阵列横截面获得的“平均”声速/温度扰动的反演组合获得的。基于匹配场和射线追踪的层析成像技术被用于“平均”扰动的反演。考虑到未来的海试,讨论了计划的采样策略和必要的声学设备来解决这些海洋特征。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Acoustic Inversion of the Cold Water Filaments Off the Southwest Coast of Portugal
Cold water filaments have important implications in the biological and chemical exchanges between the coastal and offshore ocean. The Cape Sao Vicente area in the Southwest coast of Portugal is a well know region where such phenomenon is observed. In October 2004, the multidisciplinary project ATOMS, involving oceanographers and acousticians, was conducted with the objective to complement the sea surface temperature (SST) satellite observation with a full water column characterization. Due to weather and technical conditions during the project sea trial, only CTD measurements in upper layers of the water column were performed. These at sea collected data together with archival data from the NODC database, allowed to establish a realistic scenario of the 3D temperature distribution in the area, including deeper water layers. Archival data of temperature profiles suggest the occurrence of other important oceanic phenomena such as the subduction of warm Mediterrenean water, that should also influence the acoustic propagation. With the help of forward acoustic modelling the significance and signature of the individual oceanographic phenomena on the acoustic propagation, regarding different sampling strategies of the area by acoustic means is investigated. These investigations allowed to develop strategies to settle the main problem addressed by this work: invert the cold water filament structure by acoustic means in a complex environment where acoustic propagation is affected also by other important oceanic and bathymetric features. Since, the objective of this work, is to evaluate the ability to perform a 3D characterization of vertical structure of the ocean, a minimal transmit-receive acquisition composed of a suspended source from a ship and a drifting vertical array, is assumed. The spatial structure is obtained by a combination of inversions for "mean" sound speed/temperature perturbations obtained for source-array cross-sections covering the area of interest. Matched-field and ray tracing based tomography techniques are used in the inversion for the "mean" perturbations. The planned sampling strategies and necessary acoustic equipment to resolve such oceanic features is discussed having in mind future sea trials.
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