...
首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Seasonal Variations of Arctic Low‐Level Clouds and Its Linkage to Sea Ice Seasonal Variations
【24h】

Seasonal Variations of Arctic Low‐Level Clouds and Its Linkage to Sea Ice Seasonal Variations

机译:北极低级云的季节变化及其与海冰季节变化的联系

获取原文
获取原文并翻译 | 示例
           

摘要

Using CALIPSO‐CloudSat‐Clouds and the Earth's Radiant Energy System‐Moderate Resolution Imaging Spectrometer data set, this study documents the seasonal variation of sea ice, cloud, and atmospheric properties in the Arctic (70°N–82°N) for 2007–2010. A surface‐type stratification—consisting Permanent Ocean, Land, Permanent Ice, and Transient Sea Ice—is used to investigate the influence of surface type on low‐level Arctic cloud liquid water path (LWP) seasonality. The results show significant variations in the Arctic low‐level cloud LWP by surface type linked to differences in thermodynamic state. Subdividing the Transient Ice region (seasonal sea ice zone) by melt/freeze season onset dates reveals a complex influence of sea ice variations on low cloud LWP seasonality. We find that lower tropospheric stability is the primary factor affecting the seasonality of cloud LWP. Our results suggest that variations in sea ice melt/freeze onset have a significant influence on the seasonality of low‐level cloud LWP by modulating the lower tropospheric thermal structure and not by modifying the surface evaporation rate in late spring and midsummer. We find no significant dependence of the May low‐level cloud LWP peak on the melt/freeze onset dates, whereas and September/October low‐level cloud LWP maximum shifts later in the season for earlier melt/later freeze onset regions. The Arctic low cloud LWP seasonality is controlled by several surface‐atmosphere interaction processes; the importance of each varies seasonally due to the thermodynamic properties of sea ice. Our results demonstrate that when analyzing Arctic cloud‐sea ice interactions, a seasonal perspective is critical.
机译:使用Calipso-CloudSat-云和地球的辐射能量系统 - 中度分辨率成像谱仪数据集,本研究记录了2007年北极(70°N-82°N)的海冰,云和大气性质的季节变化2010年。表面型分层组成,包括永久性海洋,陆地,永久性冰和瞬态海冰 - 用于调查表面型对低水平北极云液水路(LWP)季节性的影响。结果表明,北极低级云LWP与热力学状态的差异相关的北极低级云LWP的显着变化。通过熔融/冻结季节发病日期细分瞬态冰区(季节性海冰区)揭示了海冰变化对低云LWP季节性的复杂影响。我们发现,较低的对流层稳定性是影响云LWP季节性的主要因素。我们的研究结果表明,海冰熔融/冻结发作的变化对低水平云LWP的季节性来调节较低的对流层热结构,而不是通过改变晚春季和仲夏的表面蒸发速率,对低级云LWP的季节性有显着影响。我们发现可能在熔体/冻结发病日期上的可能低级云LWP峰值没有显着依赖性,而和9月/ 10月低级云LWP在季节以后的最高熔融/后来冻结发作区域的最大变化。北极低云LWP季节性由几种表面大气相互作用过程控制;由于海冰的热力学性质,每个人的重要性变化。我们的结果表明,在分析北极云海冰相互作用时,季节性观点至关重要。

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