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Assessing the Potential Deep-Sea Biogeochemical Hazards to Submarine Fiber Optic and Ocean Observatory Cables

机译:评估潜艇到潜艇光纤和海洋观测台电缆的潜在深海生物地球化学危害

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Submarine cables, whether for telecommunications or specifically for seafloor ocean observatories are typically buried from shore stations to a depth of 1500 meters. However, as acoustic and direct imaging technology have increased our insight into morphodynamic and biogeochemical processes in regions not requiring cable burial, the need for greater understanding of the hydro-chemo-geo-hazards to the cable and/or scientific nodes needs to be assessed. In many proposed sites such as the proposed NEPTUNE Stage 1 (Canada), numerous risks include: (A) exposed or near-surface gas hydrates, (B) frequent turbidity currents, debris flows and/or mud flows, (C) abyssal storms with currents exceeding three meters per second, (D) active vent fields with temperatures in excess of 300°Celsius, (E) seismically active regions prone to disruption of the seafloor or in many cases liquefaction, and (F) poorly documented ordnance or hazardous material disposal sites. The risks to cables and observatories are not only limited to the examples listed above but will depend on the specifics of the seabed environments at sites under investigations or routes though which the cable must transit. Cable route surveys today must incorporate a multi-disciplinary approach to identifying potential hydrologic, chemical, anthropogenic and geologic risks and perhaps re-routing or deep-water burial along hazard-prone segments in order to provide the greatest reduction of risk in harsh environments.
机译:潜艇电缆,无论是电信还是专门为海底海洋观察者都埋在岸站的深度为1500米。然而,由于声学和直接成像技术已经增加了我们对不需要电缆埋葬的地区的形态学和生物地球化学过程的洞察力,需要对电缆和/或科学节点进行更大了解对电缆和/或科学节点的氢化细化地理危害的需要。在许多拟议的网站(如拟议的海王星第1阶段)(加拿大),许多风险包括:(a)暴露或近表面气水合物,(b)频繁浊度电流,碎片流动和/或泥流动,(c)大血清电流超过每秒三米,(d)温度超过300°Celsius的活性通气场,(e)地震活动区域容易破坏海底或在许多情况下液化,(f)记录不良或危险材料处理场所。电缆和观察者的风险不仅限于上面列出的示例,而是取决于在调查或路线下的地点的海底环境的细节,否则电缆必须运输。今天的电缆路线调查必须包含一种多学科方法,可以识别潜在的水文,化学,人为和地质风险,并且沿着危险型段延伸或深水埋葬,以便在恶劣环境中最大降低风险。

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