A simple model for multiple equilibria in ice-covered oceans

M. Spall
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Abstract

The existence of multiple equilibria (ice-covered and ice-free states) is explored using a set of coupled, nondimensional equations that describe the heat and salt balances in basins, such as the Arctic Ocean, that are subject to atmospheric forcing and two distinct water mass sources. Six nondimensional numbers describe the influences of: atmospheric cooling; evaporation minus precipitation; solar radiation; atmospheric temperature, diapycnal mixing, and the temperature contrast between the two water masses. It is shown that multiple equilibria resulting from the dependence of albedo on ice cover exists over a wide range of parameter space, especially so in the weak mixing limit. Multiple equilibria can also occur if diapycnal mixing increases to O(10−4 m2 s−1) or larger under ice-free conditions due to enhanced upward mixing of warm, salty water from below. Sensitivities to various forcing parameter are discussed.
冰封海洋多重平衡的简单模型
该方程描述了北冰洋等受大气强迫和两种不同水团来源影响的盆地中的热量和盐量平衡。六个非维数描述了以下因素的影响:大气降温、蒸发减去降水、太阳辐射、大气温度、近季混合以及两个水团之间的温度反差。研究表明,反照率对冰盖的依赖性导致的多重平衡存在于广泛的参数空间,尤其是在弱混合极限下。如果在无冰条件下,由于暖咸水从下往上混合增强,近缘混合增加到 O(10-4 m2 s-1) 或更大,也会出现多重平衡。讨论了各种强迫参数的敏感性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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