首页> 外文期刊>Journal of the Atmospheric Sciences >Equatorial Zonal Jet Formation through the Barotropic Instability of Low-Frequency Mixed Rossby-Gravity Waves, Equilibration by Inertial Instability, and Transition to Superrotation
【24h】

Equatorial Zonal Jet Formation through the Barotropic Instability of Low-Frequency Mixed Rossby-Gravity Waves, Equilibration by Inertial Instability, and Transition to Superrotation

机译:通过低频混合Rossby重力波的正压不稳定性,惯性不平衡以及过渡到超旋转而形成的赤道带射流

获取原文
获取原文并翻译 | 示例
           

摘要

Depth-dependent barotropic instability of short mixed Rossby_gravity (MRG) waves is proposed as a mechanism for the formation of equatorial zonal jets. High-resolution primitive equation simulations show that a single MRG wave of very short zonal wavelength and small to moderate amplitude is unstable and leads to the development of a largely barotropic, zonally symmetric flow, featuring a westward jet at the equator and extra-equatorial jets alternating in direction with latitude. At higher but still moderate ampli_tude, westward flow still prevails at the equator at depths of maximum horizontal velocity amplitude in the initial wave, but the long-term equilibrated state can also feature eastward "superrotating" jets at the equator near the depths of zero horizontal velocity in the initial wave. The formation of the superrotating jets in the simulations is found to be sensitive to the inclusion of the nontraditional Coriolis force in the equations of motion. A linear theory is used to demonstrate the existence of exponentially growing horizontally non-divergent perturbations with a dominant zonally symmetric zonal velocity component. An argument for the sense and positioning of the jets relative to the equator is given in terms of inertial instability and the meridional mixing of planetary vorticity by the small zonal-scale components of the linearly unstable modes. In the long time evolution of the flow, if the amplitude of the westward equatorial jet becomes too great, zonally symmetric inertial instability limits the growth of the jets, and inertial adjustment leads to the homogenization of potential vorticity in latitude and depth around the equator.
机译:提出了短混合Rossby重力(MRG)波的深度相关正压不稳定性,作为形成赤道纬向射流的机制。高分辨率原始方程式仿真显示,纬向波长很短且振幅小至中等的单个MRG波是不稳定的,并导致了主要为正压,纬向对称的水流的发展,其特征是赤道向西射流和赤道外射流纬度方向交替变化。在较高但仍然适中的放大系数下,在初始波中最大水平速度振幅的深度处,赤道仍向西流动,但长期平衡状态还可以在赤道附近接近零水平深度处向东“超旋转”射流。初始波的速度。在模拟中发现超旋转射流的形成对运动方程中包含非传统科里奥利力很敏感。线性理论被用来证明存在以占主导地位的纬向对称纬向速度分量呈指数增长的水平非发散扰动的存在。根据惯性不稳定性和由线性不稳定模式的较小纬向尺度分量引起的行星涡度的子午混合,给出了射流相对于赤道的感知和定位的论点。在长时间的流动演化中,如果赤道西喷的幅值变得太大,则区域对称的惯性不稳定性会限制喷流的增长,并且惯性调整会导致赤道周围纬度和深度的潜在涡度均匀化。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号