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Oceanic Response to Surface Loading Effects Neglected in Volume-Conserving Models

机译:节约体积模型中忽略的海洋对表面载荷效应的响应

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摘要

Forcing by freshwater fluxes implies variable surface loads that are not treated in volume-conserving ocean models. A similar problem exists with the representation of volume changes implied by surface heat fluxes. Under the assumption of an equilibrium response, such surface loads merely lead to spatially uniform sea level fluctuations, which carry no dynamical significance. A barotropic model forced by realistic freshwater fluxes is used to test the validity of the equilibrium assumption on seasonal to daily time scales. The simulated nonequilibrium signals have amplitudes much weaker than those of the forcing, with standard deviations well below 1 mm over most of the deep ocean. Larger values (up to ~1 cm) can be found in shallow and semienclosed coastal areas, where the equilibrium assumption can lead to substantial errors even at monthly and longer time scales. Forcing by mean seasonal river runoff yields similar results, and heat flux effects lead to weaker nonequilibrium signals. In contrast, nonequilibrium signals driven by atmospheric pressure loading are at least an order of magnitude larger than those forced by freshwater fluxes. The exceptions occur for some shallow, coastal regions in the Tropics and at the longest time scales, in general, where forcing by freshwater flux is much stronger than by pressure.
机译:淡水通量的强迫意味着可变的表面载荷,在体积守恒的海洋模型中没有处理。存在由表面热通量暗示的体积变化的表示存在类似的问题。在平衡响应的假设下,这种表面载荷仅会导致空间均匀的海平面波动,而这没有动力学意义。由现实的淡水通量强迫产生的正压模型被用来测试季节到每日时间尺度上均衡假设的有效性。模拟的非平衡信号的振幅比强迫的振幅要弱得多,在大多数深海中,标准偏差都远低于1 mm。在浅水区和半封闭的沿海地区可以找到更大的值(最大〜1 cm),在这些地区,均衡假设即使在每月和更长的时间尺度上也可能导致相当大的误差。平均季节河流径流强迫产生的结果相似,并且热通量效应导致较弱的非平衡信号。相反,由大气压力加载驱动的非平衡信号至少比由淡水通量引起的非平衡信号大一个数量级。通常,在热带地区的某些浅海沿岸地区和最长的时间尺度上都存在例外,通常情况下,淡水通量的强迫作用要强于压力。

著录项

  • 来源
    《Journal of Physical Oceanography》 |2006年第3期|p.426-434|共9页
  • 作者

    RUI M. PONTE;

  • 作者单位

    Atmospheric and Environmental Research, Inc., 131 Hartwell Ave., Lexington, MA 02421-3126;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 海洋学;
  • 关键词

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