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首页> 外文期刊>Journal of the Atmospheric Sciences >COLLISION INTERACTIONS OF ENVELOPE ROSSBY SOLITONS IN A BAROTROPIC ATMOSPHERE
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COLLISION INTERACTIONS OF ENVELOPE ROSSBY SOLITONS IN A BAROTROPIC ATMOSPHERE

机译:正压大气中包络罗斯比孤子的碰撞相互作用

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A theory is developed here to describe the propagation of nonlinear Rossby wave packets in a barotropic atmospheric model and their interactions by using the multiple-scale method. It is shown that the propagation of a single Rossby wave packet can be described by the nonlinear Schrodinger equation that has envelope soliton solutions. For two interacting packets with slightly different wavenumbers they satisfy a set of two coupled nonlinear Schrodinger equations. These equations are used to study the collision interactions of two envelope Rossby solitons. It is found that despite the complexity of the interaction, the energy of each soliton is conserved. while the shapes and velocities of the two solitons may be altered significantly by the interaction. The action of one soliton on another is realized by providing a field of force or potential for it through the cross-modulation terms. [References: 16]
机译:此处发展了一种理论,以描述多尺度方法在正压大气模型中非线性Rossby波包的传播及其相互作用。结果表明,单个Rossby波包的传播可以通过具有包络孤子解的非线性Schrodinger方程来描述。对于波数略有不同的两个相互作用的数据包,它们满足一组两个耦合的非线性薛定inger方程。这些方程用于研究两个包络Rossby孤子的碰撞相互作用。发现尽管相互作用很复杂,但是每个孤子的能量是守恒的。而两个孤子的形状和速度可能会由于相互作用而显着改变。一个孤子对另一孤子的作用是通过交叉调制项为其提供力场或势场来实现的。 [参考:16]

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