Global S&T Development Trend Analysis Platform of Resources and Environment
DOI | 10.1175/JAS-D-16-0269.1 |
On the Development of Above-Anvil Cirrus Plumes in Extratropical Convection | |
Homeyer, Cameron R.1; McAuliffe, Joel D.2; Bedka, Kristopher M.3 | |
2017-05-01 | |
发表期刊 | JOURNAL OF THE ATMOSPHERIC SCIENCES
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ISSN | 0022-4928 |
EISSN | 1520-0469 |
出版年 | 2017 |
卷号 | 74期号:5 |
文章类型 | Article |
语种 | 英语 |
国家 | USA |
英文摘要 | Expansive cirrus clouds present above the anvils of extratropical convection have been observed in satellite and aircraft- based imagery for several decades. Despite knowledge of their occurrence, the precise mechanisms and atmospheric conditions leading to their formation and maintenance are not entirely known. Here, the formation of these cirrus "plumes'' is examined using a combination of satellite imagery, four-dimensional ground-based radar observations, assimilated atmospheric states from a state-of-the-art reanalysis, and idealized numerical simulations with explicitly resolved convection. Using data from 20 recent events (2013present), it is found that convective cores of storms with above-anvil cirrus plumes reach altitudes 1-6 km above the tropopause. Thus, it is likely that these clouds represent the injection of cloud material into the lower stratosphere. Comparison of storms with above-anvil cirrus plumes and observed tropopausepenetrating convection without plumes reveals an association with large vector differences between the motion of a storm and the environmental wind in the upper troposphere and lower stratosphere (UTLS), suggesting that gravity wave breaking and/or stretching of the tropopause-penetrating cloud are/is more prevalent in plume-producing storms. A weak relationship is found between plume occurrence and the stability of the lower stratosphere (or tropopause structure), and no relationship is found with the duration of stratospheric penetration or stratospheric humidity. Idealized model simulations of tropopause-penetrating convection with small and large magnitudes of storm-relative wind in the UTLS are found to reproduce the observationally established storm-relative wind relationship and show that frequent gravity wave breaking is the primary mechanism responsible for plume formation. |
领域 | 地球科学 |
收录类别 | SCI-E |
WOS记录号 | WOS:000400730900018 |
WOS关键词 | STRATOSPHERIC WATER-VAPOR ; ENHANCED-V ; SATELLITE-OBSERVATIONS ; RADAR OBSERVATIONS ; TOP STRUCTURE ; THUNDERSTORM ; TRACKING ; STORMS ; IDENTIFICATION ; TROPOPAUSE |
WOS类目 | Meteorology & Atmospheric Sciences |
WOS研究方向 | Meteorology & Atmospheric Sciences |
引用统计 | |
文献类型 | 期刊论文 |
条目标识符 | http://119.78.100.173/C666/handle/2XK7JSWQ/29628 |
专题 | 地球科学 |
作者单位 | 1.Univ Oklahoma, Sch Meteorol, Norman, OK 73019 USA; 2.East Carolina Univ, Dept Geog Planning & Environm, Greenville, NC USA; 3.NASA, Langley Res Ctr, Hampton, VA 23665 USA |
推荐引用方式 GB/T 7714 | Homeyer, Cameron R.,McAuliffe, Joel D.,Bedka, Kristopher M.. On the Development of Above-Anvil Cirrus Plumes in Extratropical Convection[J]. JOURNAL OF THE ATMOSPHERIC SCIENCES,2017,74(5). |
APA | Homeyer, Cameron R.,McAuliffe, Joel D.,&Bedka, Kristopher M..(2017).On the Development of Above-Anvil Cirrus Plumes in Extratropical Convection.JOURNAL OF THE ATMOSPHERIC SCIENCES,74(5). |
MLA | Homeyer, Cameron R.,et al."On the Development of Above-Anvil Cirrus Plumes in Extratropical Convection".JOURNAL OF THE ATMOSPHERIC SCIENCES 74.5(2017). |
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