Falkena Swinda K J, Quinn Courtney, Sieber Jan, Frank Jason, Dijkstra Henk A
Institute for Marine and Atmospheric Research Utrecht, Department of Physics, Utrecht University, Utrecht, The Netherlands.
Mathematics of Planet Earth Program, University of Reading, Reading, UK.
Proc Math Phys Eng Sci. 2019 Jul;475(2227):20190075. doi: 10.1098/rspa.2019.0075. Epub 2019 Jul 17.
Models incorporating delay have been frequently used to understand climate variability phenomena, but often the delay is introduced through an physical reasoning, such as the propagation time of waves. In this paper, the Mori-Zwanzig formalism is introduced as a way to systematically derive delay models from systems of partial differential equations and hence provides a better justification for using these delay-type models. The Mori-Zwanzig technique gives a formal rewriting of the system using a projection onto a set of resolved variables, where the rewritten system contains a memory term. The computation of this memory term requires solving the orthogonal dynamics equation, which represents the unresolved dynamics. For nonlinear systems, it is often not possible to obtain an analytical solution to the orthogonal dynamics and an approximate solution needs to be found. Here, we demonstrate the Mori-Zwanzig technique for a two-strip model of the El Niño Southern Oscillation (ENSO) and explore methods to solve the orthogonal dynamics. The resulting nonlinear delay model contains an additional term compared to previously proposed conceptual models. This new term leads to a larger ENSO period, which is closer to that seen in observations.
包含延迟的模型经常被用于理解气候变率现象,但延迟通常是通过物理推理引入的,比如波的传播时间。在本文中,引入了Mori-Zwanzig形式体系,作为一种从偏微分方程组系统地推导延迟模型的方法,从而为使用这些延迟型模型提供了更好的依据。Mori-Zwanzig技术通过投影到一组解析变量上对系统进行形式上的重写,重写后的系统包含一个记忆项。计算这个记忆项需要求解正交动力学方程,该方程表示未解析的动力学。对于非线性系统,通常无法获得正交动力学的解析解,需要找到近似解。在这里,我们展示了用于厄尔尼诺-南方涛动(ENSO)双带模型的Mori-Zwanzig技术,并探索求解正交动力学的方法。与先前提出的概念模型相比,所得的非线性延迟模型包含一个额外的项。这个新项导致了更长的ENSO周期,更接近观测到的周期。