首页> 外文会议>American Meteorological Society annual meeting >Eliassen-Palm Fluxes of the Diurnal Tides from the Whole Atmosphere Community Climate Model-Extended (WACCM-X)
【24h】

Eliassen-Palm Fluxes of the Diurnal Tides from the Whole Atmosphere Community Climate Model-Extended (WACCM-X)

机译:eliassen-palm助长昼夜潮汐的昼夜潮汐群落群落社区气候模型 - 扩展(waccm-x)

获取原文

摘要

[1] Through perturbation interactions with the zonal mean flow, the migrating diurnal tide and the diurnal eastward 3 (DE3) tide are fundamental to a holistic understanding of the atmospheric dynamics at mesosphere lower thermosphere (MLT) and low ionospheric altitudes. Previous tidal studies have noted the semiannual variability associated with the migrating diurnal tide and the DE3 tide, which maximize around equinox and minimize around solstice. Seasonally varying source and dissipation regions and/or wind structures are believed to cause the differences in the maximum amplitudes experienced between the two equinoxes. Utilizing monthly averaged output from the Whole Atmosphere Community Climate Model-Extended (WACCM-X), this study is among the first to apply this model to a diagnostic examination of the sources and sinks of tidal momentum and document the associated seasonal variability. From the averaged amplitudes obtained during March and September, the WACCM-X replicates the observed seasonal variability associated with the migrating diurnal tide and the DE3 tide. Calculating the divergence of the Eliassen-Palm Flux (EP Flux) for the migrating diurnal tide revealed robust seasonal variation which may be linked to differential solar heating of ozone in the stratosphere. Seasonal variation in the tropospheric sources of the DE3 tidal momentum alone does not appear to explain the semiannual variability observed in the tidal amplitudes. This study provides a better understanding of the seasonal variation in the generation and dissipation mechanisms of the migrating diurnal tide and the DE3 tide.
机译:[1]与所述纬向平均流动,迁移日潮和昼夜向东3(DE3)潮通过扰动的相互作用基本与大气动力学的全面的理解,在中间层降低热层(MLT)和低电离层的高度。上一页潮汐的研究已经注意到与迁移日潮和DE3浪潮,这最大限度地围绕春分和至日尽量减少周围相关的半年度变化。季节性变化的源和耗散区域和/或风的结构被认为会导致在这两个分点之间所经历的最大振幅的差异。利用从整个气氛共同体气候模型的扩展(WACCM-X)每月平均输出,这项研究就是这种模式应用到的来源和潮汐势头汇诊断检查,并记录相关的季节性变化首位。从三月和九月期间获得的平均振幅,将WACCM-X复制与迁移日潮和DE3潮相关的观察到的季节性变化。计算Eliassen-棕榈通量(EP磁通)迁移日潮的发散表明其可以被连接到差分臭氧的太阳能加热平流层中的强健的季节性变化。在DE3潮汐势头的对流层来源季节变化本身并没有出现解释潮汐幅度观察到的半年度变化。这项研究提供了迁移日潮和DE3潮的产生和耗散机制季节变化有更好的了解。

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