首页> 外文期刊>Deep-Sea Research >Estimating sea-ice coverage, draft, and velocity in Marguerite Bay (Antarctica) using a subsurface moored upward-looking acoustic Doppler current profiler (ADCP)
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Estimating sea-ice coverage, draft, and velocity in Marguerite Bay (Antarctica) using a subsurface moored upward-looking acoustic Doppler current profiler (ADCP)

机译:使用地下系泊的向上看的声学多普勒电流剖面仪(ADCP)估算玛格丽特湾(南极洲)的海冰覆盖范围,吃水深度和速度

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摘要

A technique for the analysis of data from a subsurface moored upward-looking acoustic Doppler current profiler (ADCP) to determine ice coverage, draft and velocity is presented and applied to data collected in Marguerite Bay on the western Antarctic Peninsula shelf. This method provides sea-ice information when no dedicated upward-looking sonar (ULS) data are available. Ice detection is accomplished using windowed variances of ADCP vertical velocity, vertical error velocity, and surface horizontal speed. ADCP signal correlation and backscatter intensity were poor indicators of the presence of ice at this site. Ice draft is estimated using a combination of ADCP backscatter data, atmospheric and oceanic pressure data, and information about the thermal stratification. This estimate requires corrections to the ADCP-derived range for instrument tilt and sound speed profile. Uncertainties of ±0.20 m during midwinter and + 0.40 m when the base of the surface mixed layer is above the ADCP for ice draft are estimated based on: (a) a Monte Carlo simulation, (b) uncertainty in the sound speed correction, and (c) performance of the zero-draft estimate during times of known open water. Ice velocity is taken as the ADCP horizontal velocity in the depth bin specified by the range estimate.
机译:介绍了一种用于分析来自地下系泊的向上看的声学多普勒电流剖面仪(ADCP)的数据以确定冰覆盖率,吃水深度和速度的技术,并将其应用于南极半岛西部陆架玛格丽特湾收集的数据。当没有专用的向上声纳(ULS)数据时,此方法可提供海冰信息。使用ADCP垂直速度,垂直误差速度和表面水平速度的开窗方差来完成冰检测。 ADCP信号的相关性和反向散射强度不足以指示该位置处有冰。使用ADCP反向散射数据,大气压力和海洋压力数据以及有关热分层的信息的组合来估算冰水。此估计值需要校正ADCP派生范围的乐器倾斜度和声速曲线。基于以下因素,可以估算出:冬季的不确定度为±0.20 m,当表面混合层的基面高于ADCP时的不确定度为+ 0.40 m,基于以下因素:(a)蒙特卡罗模拟,(b)声速校正的不确定性,以及(c)在已知的开阔水域进行零吃水估计。将冰速度作为范围估算所指定的深度箱中的ADCP水平速度。

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