PROTEKER: implementation of a submarine observatory at the Kerguelen Islands (Southern Ocean)

IF 0.4 Q4 Engineering
J. Féral, T. Saucède, E. Poulin, C. Marschal, G. Marty, Jean-Claude Roca, S. Motreuil, Jean-Pierre Beurier
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引用次数: 17

Abstract

In the context of global climate change, variations in sea surface temperature, sea level change and latitudinal shifts of oceanographic currents are expected to affect marine biodiversity of the sub-Antarctic islands located near the polar front, such as the Kerguelen Islands, particularly in coastal waters. Sampling sites of previous oceanographic programmes focused on the Kerguelen Islands were revis-ited during three scientific summer cruises aboard the trawler La Curieuse (2011–2014). Among 18 coastal sites explored using scuba diving, 8 were selected for monitoring, as representative of the Kerguelen sub-Antarctic marine habitats, to be progressively equipped with sensors and settlement plots. Remotely operated vehicle (ROV) observations and beam trawling (at 50 m and 100 m) have also been used to contextualise them. Eight sites – in the Morbihan Bay (4), and in the north (2) and south (2) of the Kerguelen Islands – are now monitored by photo and video surveys, with temperature loggers installed at 5 m and 15 m depth, and settlement plots at about 10 m depth. Temperature data have been recovered yearly since 2011 at some sites (those equipped first). Biodiversity found on settlement plots will be characterised yearly by metagenomics. The often harsh conditions at sea involve using robust underwater equipment and simple investigation techniques and protocols to ensure the permanence and the reliability of the equipment installed.
PROTEKER:在Kerguelen群岛(南大洋)实施潜艇观测站
在全球气候变化的背景下,海面温度的变化、海平面的变化和海洋洋流的纬度变化预计会影响位于极锋附近的亚南极岛屿,如凯尔盖伦群岛,特别是沿海水域的海洋生物多样性。在La Curieuse拖网渔船(2011-2014)上进行的三次夏季科学巡航期间,对以前以凯尔格伦群岛为重点的海洋学项目的采样地点进行了重新考察。在使用水肺潜水探索的18个沿海地点中,有8个被选中进行监测,作为Kerguelen亚南极海洋栖息地的代表,将逐步配备传感器和定居点。远程操作车辆(ROV)观测和波束拖网(50米和100米)也被用于将它们置于环境中。在Morbihan湾(4)和Kerguelen群岛北部(2)和南部(2)的8个地点现在通过照片和视频调查进行监测,在5米和15米深度安装了温度记录仪,并在大约10米深度安装了沉降点。自2011年以来,在一些地点(首先配备的地点)每年都会恢复温度数据。在定居地块上发现的生物多样性将每年通过宏基因组学进行表征。在海上恶劣的条件下,需要使用坚固的水下设备和简单的调查技术和协议,以确保所安装设备的持久性和可靠性。
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来源期刊
UNDERWATER TECHNOLOGY
UNDERWATER TECHNOLOGY ENGINEERING, OCEAN-
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