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A Tracer-Contour Inverse Method for Estimating Ocean Circulation and Mixing

机译:示踪轮廓反演法估算海洋环流和混合

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摘要

A method is developed for estimating the along-isopycnal and vertical mixing coefticients (K and D) and the absolute velocity from time-averaged hydrographic data. The method focuses directly on transports down tracer gradients on isopycnals. When the tracer considered is salinity or an appropriate variable for heat, this downgradient transport constitutes the along-isopycnal component of the thermohaline overturning circulation. In the method, a geostrophic streamfunction is defined that is related on isopycnals by tracer contours and by the thermal wind relationship in the vertical. Volume and tracer conservation constraints are also included. The method is overdetermined and avoids much of the signal-to-noise error associated with differentiating hydrographic data in conventional inverse methods. The method is validated against output of a layered model. It is shown to resolve both K and D, the downgradient isopycnal transport, and the mean flow on isopycnals in the North Pacific and South Atlantic.rnImportantly, an understanding is established of both the physics underlying the method and the circumstances necessary for an inverse method to determine the mixing rates and the absolute velocity. If mixing is neglected, the method is the Bernoulli inverse method. At the limit of zero weight on the tracer-contour equations the method is a conventional box inverse method. Comparisons are drawn between each method and their relative merits are discussed. A new closed expression for the absolute velocity is also presented.
机译:开发了一种方法,用于根据时间平均水文数据估算沿等深和垂直混合系数(K和D)以及绝对速度。该方法直接关注于在等位面上沿示踪剂梯度向下传输。当示踪剂被认为是盐度或热量的适当变量时,这种向下梯度的迁移构成了热盐翻转循环的沿等温分量。在该方法中,定义了一条地转流函数,该函数通过示踪剂轮廓和垂直方向的热风关系与等渗线相关。体积和示踪剂守恒约束也包括在内。该方法被过度确定,并且避免了与传统逆方法中区分水文数据相关的许多信噪比误差。针对分层模型的输出验证了该方法。它被证明可以解决北太平洋和南大西洋的K和D,下降的等速输运以及等速输运的平均流量的问题。重要的是,对于该方法所基于的物理学以及反方法的必要条件都已建立了了解确定混合速率和绝对速度。如果忽略混合,则该方法为伯努利逆方法。在示踪轮廓方程的权重为零的情况下,该方法是常规的盒逆方法。比较了每种方法,并讨论了它们的相对优点。还给出了绝对速度的新的闭合表达式。

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  • 来源
    《Journal of Physical Oceanography》 |2010年第1期|26-47|共22页
  • 作者单位

    Climate Change Research Centre, Faculty of Science, University of New South Wales, Svdnev, New South Wales, and Centre for Australian Weather and Climate Research, Hobart, Tasmania, Australia Laboratoire des ecoule-ments geophysiques et industriels, BP 53,38041, Grenoble, CEDEX 9, France;

    Centre for Australian Weather and Climate Research, Hobart, Tasmania, Australia;

    Centre for Australian Weather and Climate Research, Hobart, Tasmania, Australia;

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