...
首页> 外文期刊>Journal of Climate >The impact of stratospheric model configuration on planetary-scale waves in Northern Hemisphere winter.
【24h】

The impact of stratospheric model configuration on planetary-scale waves in Northern Hemisphere winter.

机译:平流层模型结构对北半球冬季行星尺度波的影响。

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

The impact of stratospheric model configuration on modeled planetary-scale waves in Northern Hemisphere winter is examined using the Canadian Middle Atmosphere Model (CMAM). The CMAM configurations include a high-lid (0.001 hPa) and a low-lid (10 hPa) configuration, which were each run with and without conservation of parameterized gravity wave momentum flux. The planetary wave structure, vertical propagation, and the basic state are found to be in good agreement with reanalysis data for the high-lid conservative configuration with the exception of the downward-propagating wave 1 signal. When the lid is lowered and momentum is conserved, the wave characteristics and basic state are not significantly altered, with the exception of the downward-propagating wave 1 signal, which is damped by the act of conservation. When momentum is not conserved, however, the wave amplitude increases significantly near the lid, and there is a large increase in both the upward- and downward-propagating wave 1 signals and a significant increase in the strength of the basic state. The impact of conserving parameterized gravity wave momentum flux is found to be much larger than that of the model lid height. The changes to the planetary waves and basic state significantly impact the stratosphere-troposphere coupling in the different configurations. In the low-lid configuration, there is an increase in wave-reflection-type coupling over zonal-mean-type coupling, a reduction in stratospheric sudden warming events, and an increase in the northern annular mode time scale. Conserving gravity wave momentum flux in the low-lid configuration significantly reduces these biases.
机译:使用加拿大中层大气模型(CMAM)研究了北半球冬季平流层模型配置对模拟的行星尺度波的影响。 CMAM配置包括高盖(0.001 hPa)和低盖(10 hPa)配置,它们分别在保留和不保留参数化重力波动量通量的情况下运行。发现行星波的结构,垂直传播和基本状态与高盖保守构造的再分析数据非常吻合,但向下传播的波1信号除外。当盖子下降并保持动量时,波的特性和基本状态没有显着改变,但向下传播的第1波信号除外,该信号受保持作用而衰减。但是,当动量不守恒时,盖附近的波幅会显着增加,向上和向下传播的波1信号都会大幅增加,并且基本状态的强度也会显着增加。发现保留参数化重力波动量通量的影响比模型盖高度的影响大得多。行星波和基本状态的变化显着影响了不同构造中的平流层-对流层耦合。在低层构造中,波反射型耦合比纬向平均型耦合增加,平流层突然变暖事件减少,北环形模式时标增加。在低盖配置中保持重力波动量通量可显着降低这些偏差。

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