首页> 外文期刊>Atmospheric Chemistry and Physics Discussions >Global large-scale stratospherea??troposphere exchange in modern reanalyses
【24h】

Global large-scale stratospherea??troposphere exchange in modern reanalyses

机译:现代再分析中的全球大型平流层—对流层交换

获取原文
           

摘要

pstrongAbstract./strong Stratospherea??troposphere exchange (STE) has important impacts on the chemical and radiative properties of the upper troposphere and lower stratosphere. This study presents a 15-year climatology of global large-scale STE from four modern reanalyses ERA-Interim, JRA-55, MERRA-2, and MERRA. STE is separated into three regions (tropics, subtropics, and extratropics) and two transport directions (stratosphere-to-troposphere transport or STT and troposphere-to-stratosphere transport or TST) in an attempt to identify the significance of known transport mechanisms. The extratropics and tropics are separated by the tropopause qbreak/q. Any STE occurring between the tropics and the extratropics through the tropopause break is considered subtropical exchange (i.e., in the vicinity of the subtropical jet). brbr In addition, this study employs a method to identify STE as that which crosses the lapse-rate tropopause (LRT), while most previous studies have used a potential vorticity (PV) isosurface as the tropospherea??stratosphere boundary. PV-based and LRT-based STE climatologies are compared using the ERA-Interim reanalysis output. The comparison reveals quantitative and qualitative differences, particularly for TST in the polar regions. brbr Based upon spatiotemporal integrations, we find STE to be STT dominant in ERA-Interim and JRA-55 and TST dominant in MERRA and MERRA-2. The sources of the differences are mainly attributed to inconsistencies in the representation of STE in the subtropics and extratropics. Time series during the 15-year analysis period show long-term changes that are argued to correspond with changes in the Brewera??Dobson circulation./p.
机译:> >摘要。平流层—对流层交换(STE)对高对流层和低平流层的化学和辐射性质有重要影响。这项研究通过对ERA-Interim,JRA-55,MERRA-2和MERRA的四项现代再分析,介绍了全球大型STE的15年气候。 STE分为三个区域(热带,亚热带和温带)和两个传输方向(平流层到对流层传输或STT和对流层到平流层传输或TST),以试图确定已知传输机制的重要性。温带和热带被对流层顶 break 隔开。通过对流层顶断裂发生在热带和温带之间的任何STE被认为是亚热带交换(即在亚热带射流附近)。 另外,本研究采用一种方法将STE识别为穿过对流率对流层顶(LRT),而大多数先前的研究都使用了潜在涡度(PV)等值面作为对流层?平流层边界。使用ERA-Interim重新分析输出比较基于PV和基于LRT的STE气候。比较揭示了数量和质量上的差异,特别是在极地地区的TST。 基于时空积分,我们发现STE在ERA-Interim和JRA-55中为STT主导,在MERRA和MERRA-2中为TST主导。差异的来源主要是由于亚热带和温带地区的STE表示方式不一致。 15年分析期间的时间序列显示长期变化,认为与Brewera ?? Dobson循环的变化相对应。

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