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首页> 外文期刊>Frontiers in Marine Science >Operating Cabled Underwater Observatories in Rough Shelf-Sea Environments: A Technological Challenge
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Operating Cabled Underwater Observatories in Rough Shelf-Sea Environments: A Technological Challenge

机译:在粗糙的货架 - 海洋环境中运行有线水下观察室:技术挑战

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摘要

Cabled coastal observatories are often seen as future-oriented marine technology that enables science to conduct observational and experimental studies under water year round, independent of physical accessibility to the target area. Additionally, the availability of (unrestricted) electricity and an Internet connection under water allows the operation of complex experimental setups and sensor systems for longer periods of time, thus creating a kind of laboratory beneath the water. After successful operation for several decades in the terrestrial and atmospheric research field, remote controlled observatory technology finally also enables marine scientists to take advantage of the rapidly growing communication technology. The continuous operation of two cabled observatories in the southern North Sea and off the Svalbard coast since 2012 shows that even highly complex sensor systems, such as stereo-optical cameras, video plankton recorders or systems for measuring the marine carbonate system, can be successfully operated remotely year-round facilitating continuous scientific access to areas that are difficult to access, such as the polar seas or the North Sea. Experience also shows, however, that the challenges of operating a cabled coastal observatory go far beyond the provision of electricity and network connection under water. In this manuscript, the essential developmental stages of the "COSYNA Shallow Water Underwater Node" system are presented, and the difficulties and solutions that have arisen in the course of operation since 2012 are addressed with regard to technical, organizational and scientific aspects.
机译:有线沿海观察者通常被视为面向未来的海洋技术,使科学能够在水中进行观察和实验研究,与目标区域的物理可访问性无关。此外,水下(不受限制的)电和互联网连接的可用性允许复杂的实验设置和传感器系统的操作更长的时间段,从而在水下创造了一种实验室。在陆地和大气研究领域的数十年成功运行后,遥控天文台技术终于使海洋科学家能够利用快速增长的通信技术。自2012年以来南海南海和斯瓦尔巴邦海岸的两台有线观察区的连续运行表明,即使高度复杂的传感器系统,如立体声相机,视频浮游车或用于测量船用碳酸盐系统的系统,也可以成功地运行远程全年促进对难以访问的地区的持续科学获得,例如北部海洋等地区。然而,经验还表明,经营有线沿海天文台的挑战远远超出水下的电力和网络连接。在该稿件中,提出了“COSYNA浅水水下节点”系统的基本发展阶段,并且在2012年以来的运营过程中出现的困难和解决方案是关于技术,组织和科学方面的解决。

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