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Multiple solutions and numerical analysis to the dynamic and stationary models coupling a delayed energy balance model involving latent heat and discontinuous albedo with a deep ocean

机译:动态和静态模型的多重解和数值分析,结合了潜热和深海不连续反照率的延迟能量平衡模型

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摘要

We study a climatologically important interaction of two of the main components of the geophysical system by adding an energy balance model for the averaged atmospheric temperature as dynamic boundary condition to a diagnostic ocean model having an additional spatial dimension. In this work, we give deeper insight than previous papers in the literature, mainly with respect to the 1990 pioneering model by Watts and Morantine. We are taking into consideration the latent heat for the two phase ocean as well as a possible delayed term. Non-uniqueness for the initial boundary value problem, uniqueness under a non-degeneracy condition and the existence of multiple stationary solutions are proved here. These multiplicity results suggest that an S-shaped bifurcation diagram should be expected to occur in this class of models generalizing previous energy balance models. The numerical method applied to the model is based on a finite volume scheme with nonlinear weighted essentially non-oscillatory reconstruction and Runge–Kutta total variation diminishing for time integration.
机译:我们通过将平均大气温度作为动态边界条件的能量平衡模型添加到具有附加空间维度的诊断海洋模型中,来研究地球物理系统两个主要组成部分在气候学上的重要相互作用。在这项工作中,我们提供了比以前的文献更深刻的见识,主要是关于Watts和Morantine于1990年提出的先驱模型。我们正在考虑两相海洋的潜热以及可能的延迟期限。证明了初始边值问题的非唯一性,在非退化条件下的唯一性以及多个平稳解的存在。这些多重结果表明,应该在此类模型中推广出以前的能量平衡模型,从而出现S形分叉图。应用于模型的数值方法是基于有限体积方案,其中非线性加权基本上是非振荡重建,并且Runge-Kutta总变化减小了时间积分。

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