首页> 外文期刊>Methods in Oceanography >Assessing the potential of autonomous submarine gliders for ecosystem monitoring across multiple trophic levels (plankton to cetaceans) and pollutants in shallow shelf seas
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Assessing the potential of autonomous submarine gliders for ecosystem monitoring across multiple trophic levels (plankton to cetaceans) and pollutants in shallow shelf seas

机译:评估自主潜艇滑翔机在跨多个营养级(浮游生物到鲸类)和污染物的浅海中监测生态系统的潜力

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摘要

A combination of scientific, economic, technological and policy drivers is behind a recent upsurge in the use of marine autonomous systems (and accompanying miniaturized sensors) for environmental mapping and monitoring. Increased spatial–temporal resolution and coverage of data, at reduced cost, is particularly vital for effective spatial management of highly dynamic and heterogeneous shelf environments. This proof-of-concept study involves integration of a novel combination of sensors onto buoyancydriven submarine gliders, in order to assess their suitability for ecosystem monitoring in shelf waters at a variety of trophic levels. Two shallow-water Slocum gliders were equipped with CTD and fluorometer to measure physical properties and chlorophyll, respectively. One glider was also equipped with a single-frequency echosounder to collect information on zooplankton and fish distribution. The other glider carried a Passive Acoustic Monitoring system to detect and record cetacean vocalizations, and a passive sampler to detect chemical contaminants in the water column. The two gliders were deployed together off southwest UK in autumn 2013, and targeted a known tidal-mixing front west of the Isles of Scilly. The gliders’ mission took about 40 days, with each glider travelling distances of >1000 km and undertaking >2500 dives to depths of up to 100 m. Controlling glider flight and alignment of the two glider trajectories proved to be particularly challenging due to strong tidal flows. However, the gliders continued to collect data in poor weather when an accompanying research vessel was unable to operate. In addition, all glider sensors generated useful data, with particularly interesting initial results relating to subsurface chlorophyll maxima and numerous fish/cetacean detections within the water column. The broader implications of this study for marine ecosystem monitoring with submarine gliders are discussed.
机译:科学,经济,技术和政策驱动因素的结合是近来使用海洋自治系统(以及随附的小型传感器)进行环境制图和监测的热潮。以降低的成本提高时空分辨率和数据覆盖范围,对于对高度动态且异构的货架环境进行有效的空间管理尤为重要。这项概念验证研究涉及将传感器的新型组合集成到浮力驱动的海底滑翔机上,以评估其在各种营养级的架子水域中进行生态系统监测的适用性。两个浅水Slocum滑翔机都配备了CTD和荧光计,分别测量物理性质和叶绿素。一架滑翔机还配备了单频回声测深仪,以收集有关浮游动物和鱼类分布的信息。另一架滑翔机配备了一个被动声学监测系统,以检测和记录鲸类的声音,以及一个被动采样器,以检测水柱中的化学污染物。这两个滑翔机于2013年秋季在英国西南部一起部署,并瞄准了锡利群岛以西的一个已知的潮汐混合前线。滑翔机的飞行历时约40天,每个滑翔机的行进距离均> 1000 km,并进行了超过2500次潜水,潜水深度最大为100 m。由于强烈的潮汐流,控制滑翔机飞行和两个滑翔机轨迹的对齐被证明是特别具有挑战性的。但是,当伴随的研究船无法操作时,滑翔机继续在恶劣天气下收集数据。此外,所有滑翔机传感器都产生了有用的数据,特别有趣的初始结果涉及地下叶绿素最大值和水柱内大量鱼类/鲸类科动物的检测。讨论了这项研究对海底滑翔机监测海洋生态系统的广泛意义。

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