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首页> 外文期刊>Journal of atmospheric and oceanic technology >Optimal Linear Fitting for Objective Determination of Ocean Mixed Layer Depth from Glider Profiles
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Optimal Linear Fitting for Objective Determination of Ocean Mixed Layer Depth from Glider Profiles

机译:从滑翔机剖面客观确定海洋混合层深度的最佳线性拟合

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摘要

A new optimal linear fitting method has been developed to determine mixed layer depth from profile data. This methodology includes three steps: 1) fitting the profile data from the first point near the surface to a depth using a linear polynomial, 2) computing the error ratio of absolute bias of few data points below that depth versus the root-mean-square error of data points from the surface to that depth between observed and fitted data, and 3) finding the depth (i.e., the mixed layer depth) with maximum error ratio. Temperature profiles in the western North Atlantic Ocean over 14 November-5 December 2007, collected from two gliders (Seagliders) deployed by the Naval Oceanographic Office, are used to demonstrate the capability of this method. The mean quality index (1.0 for perfect determination) for determining mixed layer depth is greater than 0.97, which is much higher than the critical value of 0.8 for well-defined mixed layer depth with that index.
机译:已经开发了一种新的最佳线性拟合方法,可以从轮廓数据确定混合层深度。该方法包括三个步骤:1)使用线性多项式将表面附近第一点的轮廓数据拟合到深度,2)计算该深度以下几个数据点的绝对偏差与均方根的误差比从表面到深度之间的数据点误差介于已观测数据和拟合数据之间,并且3)找到具有最大误差率的深度(即混合层深度)。 2007年11月14日至12月5日在北大西洋西部的温度分布图,是从海军海洋学办公室部署的两个滑翔机(Seagliders)中收集的,用于证明该方法的功能。用于确定混合层深度的平均质量指数(完美确定为1.0)大于0.97,远高于具有该指数的定义明确的混合层深度的临界值0.8。

著录项

  • 来源
    《Journal of atmospheric and oceanic technology》 |2010年第11期|p.1893-1898|共6页
  • 作者

    Peter C. Chu; Chenwu Fan;

  • 作者单位

    Department of Oceanography, Naval Postgraduate School, 833 Dyer Rd., Monterey, CA 93943;

    rnDepartment of Oceanography, Naval Postgraduate School, Monterey, California;

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  • 正文语种 eng
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