论文标题
全球大气动力学的简化二维模型
Simplified Two-Dimensional Model for Global Atmospheric Dynamics
论文作者
论文摘要
我们提出了一个简化的陆地行星大气模型,作为一个开放式二维系统,该系统由具有速度$ \ vec {v} $,密度$ρ$和温度$ t $ fields的理想气体描述。从Chern-Simons方程开始,用于自由无粘性流体,辐射的外部影响以及物质与地层的交换以及扩散和耗散。所得的动力学由一组及时的一组非线性微分方程控制。这定义了一个初始值问题,可以在行星的辐射平衡下进行集成。如果忽略了非线性,则可以使用标准的绿色功能方法以分析形式进行集成,并且以一致的方式将小型非线性作为扰动校正结合在一起。如果非线性近似不合理,则可以通过数值集成问题。提供了方程中连续参数范围的线性表达式的分析表达式以及模拟,从而允许探索模型对这些参数变化的响应。特别是,观察到大气发射率降低了2.5%,在平均全球温度下会导致7c度增加。
We present a simplified model of the atmosphere of a terrestrial planet as an open two-dimensional system described by an ideal gas with velocity $\vec{v}$, density $ρ$ and temperature $T$ fields. Starting with the Chern-Simons equations for a free inviscid fluid, the external effects of radiation and the exchange of matter with the strata, as well as diffusion and dissipation are included. The resulting dynamics is governed by a set of nonlinear differential equations of first order in time. This defines an initial value problem that can be integrated given the radiation balance of the planet. If the nonlinearities are neglected, the integration can be done in analytic form using standard Green function methods, with small nonlinearities incorporated as perturbative corrections in a consistent way. If the nonlinear approximation is not justified, the problem can be integrated numerically. The analytic expressions as well as the simulations of the linear regime for a continuous range of parameters in the equations is provided, which allows to explore the response of the model to changes of those parameters. In particular, it is observed that a 2.5% reduction in the emissivity of the atmosphere can lead to an increase of 7C degrees in the average global temperature.