Hsia Chun-Hsiung, Lin Chang-Shou, Ma Tian, Wang Shouhong
Institute of Applied Mathematical Sciences , National Taiwan University , Taipei 10617, Taiwan, Republic of China.
Department of Mathematics , National Taiwan University , Taipei 10617, Taiwan, Republic of China.
Proc Math Phys Eng Sci. 2015 Jan 8;471(2173):20140353. doi: 10.1098/rspa.2014.0353.
The main objective of this article is to study the effect of the moisture on the planetary scale atmospheric circulation over the tropics. The modelling we adopt is the Boussinesq equations coupled with a diffusive equation of humidity, and the humidity-dependent heat source is modelled by a linear approximation of the humidity. The rigorous mathematical analysis is carried out using the dynamic transition theory. In particular, we obtain mixed transitions, also known as random transitions, as described in Ma & Wang (2010 , 1399-1417. (doi:10.3934/dcds.2010.26.1399); 2011 , 612-622. (doi:10.1007/s00376-010-9089-0)). The analysis also indicates the need to include turbulent friction terms in the model to obtain correct convection scales for the large-scale tropical atmospheric circulations, leading in particular to the right critical temperature gradient and the length scale for the Walker circulation. In short, the analysis shows that the effect of moisture lowers the magnitude of the critical thermal Rayleigh number and does not change the essential characteristics of dynamical behaviour of the system.
本文的主要目的是研究湿度对热带地区行星尺度大气环流的影响。我们采用的模型是将布辛涅斯克方程与湿度扩散方程耦合,并且湿度依赖型热源通过湿度的线性近似来建模。使用动态转变理论进行了严格的数学分析。特别地,如Ma和Wang(2010,1399 - 1417.(doi:10.3934/dcds.2010.26.1399);2011,612 - 622.(doi:10.1007/s00376-010-9089-0))中所描述的,我们得到了混合转变,也称为随机转变。分析还表明需要在模型中纳入湍流摩擦项,以获得适用于大规模热带大气环流的正确对流尺度,特别是导致沃克环流的正确临界温度梯度和长度尺度。简而言之,分析表明湿度的影响降低了临界热瑞利数的大小,并且不会改变系统动力学行为的基本特征。