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Acoustical database dedicated to fish stock assessment being optimized to generate seafloor information and integrate biological, environmental and geomorphological studies

机译:优化了用于鱼类种群评估的声学数据库,以生成海底信息并整合生物学,环境和地貌学研究

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The Fisheries Technology and Hydroacoustics Laboratory (TECPESQ-Institute of Oceanography, University of Rio Grande-IO-FURG-Brazil) has traditionally dedicated its working group to fish stock assessments using hydroacoustics. This technique allows the remote detection of organisms throughout the transmission of acoustic energy and the evaluation of the echoes. In order to attend different projects, we have prospected the Brazilian coast on board the R.V. Atl??????nticoSul, along more than 47,000 nautical miles. Acoustic data have been collected with scientific echo sounders SIMRAD EK 500 or SIMRAD EK 60. Complementary data have also been obtained, sampling organisms in the water column and bottom, as well as gathering environmental data. The large acoustic database was, at a certain moment, in contrast with the shortage of bathymetric and geomorphological data available, to be incorporated in the biological and environmental studies. This situation forced the group to start filtering and validating bathymetric and Bottom Surface Backscattering Strength (BSBS) data, collected along all cruises but not used previously and considered as secondary information. In 2004, part of the BSBS data base were analyzed and correlated to substrate composition and particle size which allowed to refine and detail the overall characteristics of the of the Southeast and South sectors of the Brazilian continental shelf and shelf break. In the same year, acoustic seafloor data were used to map three pockmarks, at a depth of 700 m, in the Santos Basin. In 2005, bathymetric data from seven surveys were integrated with satellite altimetry to generate three-dimensional maps of the Brazilian continental margin, which allowed a more detailed analysis of geological features, such as the Cone and the Plato do Rio Grande, Plato de S??????o Paulo and the Vitoria Trindade Chain. In 2007, distinct seabed features were identified and entered in a GIS after the analysis of data collected in the Braz- lian continental margin. In 2009, data from four cruises on the southern most part of the continental shelf were used to map the Albard??????o paleochannel, a vestige of ancient drainage of the La Plata River. BSBS values inside of this channel were significantly lower than from the external surrounding area, indicative of the presence of muddy sediments. In 2011, BSBS data were entered in a 3D GIS and integrated to bathymetric, environmental and sedimentological data, which allowed the identification of areas with acoustic features typical of phosphorite deposits, a mineral of great strategic and economical importance. Recently, in 2013, a map of the bottom reflectivity of the Pelotas Basin was finished, generated from 1,507,823 BSBS values, which allowed the identification of four important sea bottom features. The TECPESQ acoustic database increases at every research cruise. The ship is now fitted with new transducers, increasing the number of frequencies which will lead to more detailed studies of the characteristics of the reflective surface of the seabed of the Brazilian coast. This summary presents the feasibility of integrating and optimizing the use of vessels equipped with acoustic sensors, working for different projects, to build large databases, useful to generate integrated knowledge of the marine environment.
机译:传统上,渔业技术和水声实验室(TECPESQ-海洋研究所,巴西里约热内卢-福尔格大学)一直将其工作组专门用于使用水声进行鱼类种群评估。该技术允许在整个声能传输过程中对生物进行远程检测,并对回声进行评估。为了参加不同的项目,我们在R.V.船上探查了巴西海岸。 Atl ??? nticoSul,沿47,000多海里。用科学的回声测深仪SIMRAD EK 500或SIMRAD EK 60收集了声音数据。还获得了补充数据,对水柱和水底的生物进行了采样,并收集了环境数据。与某个可用的测深和地貌数据不足相比,大型声学数据库在某一时刻被纳入了生物学和环境研究。这种情况迫使该小组开始过滤和验证沿所有航行收集的海深和底面后向散射强度(BSBS)数据,但以前并未使用过,并被视为辅助信息。 2004年,对BSBS数据库的一部分进行了分析,并将其与基质成分和颗粒大小相关联,从而可以细化和详细说明巴西大陆架和架子断裂的东南部和南部地区的总体特征。同年,利用海底声学数据绘制了桑托斯盆地700 m深度的三个麻点。 2005年,将来自七个勘测的测深数据与卫星测高仪集成在一起,以生成巴西大陆边缘的三维地图,从而可以对地质特征进行更详细的分析,例如圆锥体和柏拉图里奥格兰德河,柏拉图德? o Paulo和Vitoria Trindade连锁店。在分析了巴西大陆边缘收集的数据之后,在2007年,确定了独特的海底特征并将其输入GIS。 2009年,使用大陆架最南端四次航行的数据绘制了阿尔帕德河或古河道的地图,古河道是拉普拉塔河的古老排水渠的遗迹。该通道内部的BSBS值显着低于外部周围区域的BSBS值,表明存在泥泞的沉积物。 2011年,BSBS数据输入到3D GIS中,并整合到测深,环境和沉积学数据中,从而可以识别具有典型磷矿矿床声特征的区域,磷矿矿床具有重要的战略和经济意义。最近,在2013年,从1,507,823个BSBS值生成了Pelotas盆地底部反射率的地图,这可以识别四个重要的海底特征。 TECPESQ声学数据库在每次研究航行中都会增加。该船现在装有新的换能器,从而增加了频率数量,这将导致对巴西海岸海床反射面特征进行更详细的研究。本摘要介绍了整合和优化配备声传感器的船舶的可行性,这些船舶可用于不同的项目,以建立大型数据库,有助于生成有关海洋环境的综合知识。

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