In this paper, the dynamical forming mechanism of analogous rhythm phenomenon is studied by using a coupled ocean-atmosphere model in form of analogous discrepance. The results show that the analogous rhythm is non-uniform oscillation of analogous discrepance disturbance which is caused by the nonlinear coupled interaction of ocean-air system and the seasonal variation of monthly mean circulation. Then, the numerical simulations and sensitivity studies are conducted by using a global coupled ocean-atmosphere dynamical-statistical seasonal long-range numerical prediction model, the results not only prove the result of theoretical analysis, but also provide the basis of making seasonal long-range numerical prediction by using this model.
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