首页> 外文会议>OCEANS 2016 MTS/IEEE Monterey >Axial Seamount - wired and restless: A cabled submarine network enables real-time, tracking of a Mid-Ocean Ridge eruption and live video of an active hydrothermal system Juan de Fuca Ridge, NE Pacific
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Axial Seamount - wired and restless: A cabled submarine network enables real-time, tracking of a Mid-Ocean Ridge eruption and live video of an active hydrothermal system Juan de Fuca Ridge, NE Pacific

机译:轴向海山-有线和动静:有线海底网络可实时跟踪中海脊喷发,并提供东北太平洋太平洋热胡安(Juan de Fuca Ridge)热液系统的实时视频

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The most scientifically diverse and technologically advanced component of the National Science Foundations' $386M investment in the Ocean Observatories Initiative (OOI), involves 900 kilometers of high power and bandwidth electro-optical cable extending from Pacific City, OR, across active portions of the Juan de Fuca tectonic plate and up into the overlying ocean. Completed on time and under budget in October, 2014, this mesoscale fiber-optic sensor array enables real-time, high-bandwidth, 2-way communication with seafloor and water-column sensor networks across: 1) a portion of the global Mid-Ocean Ridge (MOR), 2) a section of the Cascadia Subduction Zone, and, 3) a cross-section of the California Current, a component of the North Pacific Gyre. Much of the data generated from >130 fiber-linked instruments has become available for scientific, educational and public user communities over the past 6 to 12 months, via the OOI Cyber-infrastructure (http://oceanobservatories.org/data-portal/). Since the OOI Cabled System has been in use and streaming live data to shore, two major developments have emerged that bear on undersea volcano-hydrothermal systems: 1) The 2015 submarine eruption of Axial Seamount was documented in a unique fashion by 20 remote, hardwired instruments distributed across the floor of the summit caldera. 2) Live, streaming video of an active hydrothermal system within one of the vent fields inside the caldera reveals subtle changes taking place in the Axial system.
机译:国家科学基金会对海洋观测计划(OOI)进行的3.86亿美元投资中,科学性最强,技术最先进的部分涉及900公里高功率和带宽的光电电缆,从俄勒冈州太平洋市延伸而来,横跨太平洋的活跃部分胡安·德·富卡构造板块并向上进入上覆海洋。这种中等规模的光纤传感器阵列已按计划在2014年10月按时完成,并在预算内完成,可与以下区域的海底和水柱传感器网络进行实时,高带宽,2路通信:1)全球中部地区的一部分海洋脊(MOR),2)卡斯卡迪亚俯冲带的一部分,以及3)加利福尼亚洋流(北太平洋环流的一个组成部分)的横截面。在过去6到12个月中,通过OOI网络基础设施(http://oceanobservatories.org/data-portal/),科学,教育和公共用户社区可以使用从超过130种光纤连接的仪器生成的许多数据。 )。自从使用OOI电缆系统并向岸上传输实时数据以来,出现了两个主要的发展,这些发展涉及海底火山-热液系统:1)2015年,Axial Seamount的海底火山爆发以独特的方式被记录在案的20个远程硬接线仪器分布在山顶火山口的地板上。 2)破火山口内部某个通风区域内活跃的热液系统的实时流式传输视频揭示了轴向系统中发生的细微变化。

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