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Implementation of a hydroacoustic monitoring system for the comprehensive nuclear-test-ban treaty

机译:综合核试验禁令条约的水声监测系统的实施

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For the purpose of monitoring compliance with the Comprehensive Nuclear-Test-Ban Treaty, a global hydroacoustic network is being established in order to detect, locate and identify the signal generated by a nuclear explosion. The network iscomposed of 6 hydrophone and 5 T-phase stations.A hydrophone station is based on an ocean-deployed hydrophone sensor with a frequency range of 1 Hz to 100 Hz. The hydrophone sensor elements are at a fixed depth near the axis of the SOFAR channel, floated from an ocean-bottom anchor and cabled back toshore.A T-phase station is based on an island-deployed seismometer sensor. Each T-phase station is sited near the shore of a small island with steep bathymetry. It relies on the detection of a signal that has propagated predominantly through the ocean, but hasbeen converted to seismic energy at the margin of the island.The implementation of the network is carried out in a phased-approach and starts with a site survey for each station. This survey is meant to assess the suitability of the site for hosting a station and to prepare for the installation work. It involvesvarious tasks, primarily bathymetric measurements, sea floor characterization, noise measurements, evaluation of the environment constraints, studies of acoustic propagation, and assessment of the efficiency of the hydroacoustic/seismic conversion.There are currently no existing stations that meet the CTBT requirements and a complete and complex design phase has to be implemented, especially for hydrophone stations. Particular attention is given to the following topics: system noise, calibrationand quality of the data measurements at low frequency, deployment and reliability of the equipment.
机译:为了监测遵守全面的核试验条约,正在建立全球水声网络,以检测,定位和识别核爆炸产生的信号。网络呈现为6个水多晶体和5个T相站。水多晶硅站基于海洋部署的室装水电传感器,频率范围为1 Hz至100Hz。水听器传感器元件处于靠近Sofar通道的轴线附近的固定深度,从海底锚浮动并连接到Toshore.A ToShore.A TOSHORE基于岛展开的地震计传感器。每个T相站都在一个带有陡峭的沐浴浴的小岛的岸边侧面。它依赖于检测到主要通过海洋传播的信号,但是已经在岛的边缘转换为地震能量。网络的实现以分阶段进行进行,并以每个的现场调查开始车站。本调查旨在评估网站托管站的适用性,并为安装工作做好准备。它涉及任务,主要是碱基测量,海底表征,噪声测量,对环境约束的评估,声学传播的研究,以及对水声/地震转换的效率的评估。目前没有符合CTBT要求的现有站点必须实施完整和复杂的设计阶段,特别是对于水电站。特别注意以下主题:系统噪声,校准和数据测量的质量低频,部署和设备的可靠性。

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    《OCEANS MTS/IEEE》|1999年||共6页
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    Patrick Grenard;

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  • 中图分类 P75-53;
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