Temporal and spatial benthic data collection via an internet operated Deep Sea Crawler

Autun Purser , Laurenz Thomsen , Chris Barnes , Mairi Best , Ross Chapman , Michael Hofbauer , Maik Menzel , Hannes Wagner
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引用次数: 50

Abstract

Environmental conditions within deep-sea ecosystems such as cold-seep provinces or deep-water coral reefs vary temporally and spatially over a range of scales. To date, short periods of intense ship-borne activity or low resolution, fixed location studies by Lander systems have been the main investigative methods used to investigate such sites.

Cabled research infrastructures now enable sensor packages to receive power and transmit data from the deep-sea in real-time. By attaching mobile research platforms to these cabled networks, the investigation of spatial and temporal variability in environmental conditions and/or faunal behaviour across the deep sea seafloor is now a possibility.

Here we describe one such mobile platform: a tracked Deep Sea Crawler, controlled in real-time via the Internet from any computer worldwide. The Crawler has been extensively used on the NEPTUNE Canada cabled observatory network at a cold-seep site at ∼890 m depth in the Barkley Canyon, NE Pacific. We present both the technical overview of the Crawler development and give examples of scientific results achieved.

通过互联网操作的深海爬行器收集时空底栖生物数据
深海生态系统(如冷渗区或深水珊瑚礁)内的环境条件在一定尺度上具有时空差异。迄今为止,对这些地点进行调查的主要调查方法是短时间的强烈船载活动或由着陆器系统进行的低分辨率固定位置研究。电缆研究基础设施现在使传感器包能够实时接收来自深海的电力和传输数据。通过将移动研究平台连接到这些有线网络,对深海海底环境条件和/或动物行为的时空变化进行调查现在成为可能。在这里,我们描述一个这样的移动平台:一个跟踪的深海爬行器,通过互联网从世界各地的任何计算机实时控制。Crawler已广泛用于NEPTUNE加拿大电缆观测站网络,该观测站位于太平洋东北部巴克利峡谷约890米深的冷渗漏站点。我们介绍了Crawler开发的技术概况,并给出了取得科学成果的例子。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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