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Autonomous Underwater Vehicles (AUVs): Their past, present and future contributions to the advancement of marine geoscience

机译:自主水下航行器(AUV):过去,现在和未来对海洋地球科学发展的贡献

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Autonomous Underwater Vehicles (AUVs) have a wide range of applications in marine geoscience, and are increasingly being used in the scientific, military, commercial, and policy sectors. Their ability to operate autonomously of a host vessel makes them well suited to exploration of extreme environments, from the world's deepest hydrothermal vents to beneath polar ice sheets. They have revolutionised our ability to image the sea-floor, providing higher resolution seafloor mapping data than can be achieved from surface vessels, particularly in deep water. This contribution focuses on the major advances in marine geoscience that have resulted from AUV data. The primary applications are i) submarine volcanism and hydrothermal vent studies, ii) mapping and monitoring of low-temperature fluid escape features and chemosynthetic ecosystems, iii) benthic habitat mapping in shallow- and deep-water environments, and iv) mapping of seafloor morphological features (e.g. bedforms generated beneath ice or sediment-gravity flows). A series of new datasets is presented that highlight the growing versatility of AUVs for marine geoscience studies, including i) multi-frequency acoustic imaging of trawling impacts on deep-water coral mounds, iii) collection of high-resolution seafloor photomosaics at abyssal depths, and iii) velocity measurements of active submarine density flows. Future developments in AUV technology of potential relevance to marine geoscience include new vehicles with enhanced hovering, long endurance, extreme depth, or rapid response capabilities, while development of new sensors will further expand the range of geochemical parameters that can be measured.
机译:自主水下航行器(AUV)在海洋地球科学中具有广泛的应用,并且越来越多地用于科学,军事,商业和政策领域。他们具有自主操作船只的能力,使其非常适合极端环境的探索,从世界上最深的热液喷口到极地冰盖以下。他们彻底改变了我们对海底成像的能力,提供了比从水面船只(尤其是深水)所能获得的分辨率更高的海底地图数据。这项贡献着重于AUV数据在海洋地球科学方面的重大进展。主要应用是:i)海底火山和热液喷口研究,ii)低温流体逸出特征和化学合成生态系统的制图和监测,iii)浅水和深水环境的底栖生境制图,以及iv)海底形态学制图特征(例如在冰或沉积物重力流下产生的地层)。提出了一系列新的数据集,突显了AUV在海洋地球科学研究中日益增长的多功能性,其中包括:i)拖网对深水珊瑚丘的影响的多频声成像,iii)深海深度的高分辨率海底光马赛克, iii)活跃海底密度流的速度测量。与海洋地球科学潜在相关的AUV技术的未来发展包括具有增强的悬停,长续航能力,极限深度或快速响应能力的新型运载工具,而新传感器的开发将进一步扩大可测量的地球化学参数的范围。

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