GSTDTAP  > 地球科学
DOI10.5194/acp-19-12431-2019
Microphysics of summer clouds in central West Antarctica simulated by the Polar Weather Research and Forecasting Model (WRF) and the Antarctic Mesoscale Prediction System (AMPS)
Hines, Keith M.1; Bromwich, David H.1,2; Wang, Sheng-Hung1; Silber, Israel3; Verlinde, Johannes3; Lubin, Dan4
2019-10-08
发表期刊ATMOSPHERIC CHEMISTRY AND PHYSICS
ISSN1680-7316
EISSN1680-7324
出版年2019
卷号19期号:19页码:12431-12454
文章类型Article
语种英语
国家USA
英文摘要

The Atmospheric Radiation Measurement (ARM) West Antarctic Radiation Experiment (AWARE) provided a highly detailed set of remote-sensing and surface observations to study Antarctic clouds and surface energy balance, which have received much less attention than for the Arctic due to greater logistical challenges. Limited prior Antarctic cloud observations have slowed the progress of numerical weather prediction in this region. The AWARE observations from the West Antarctic Ice Sheet (WAIS) Divide during December 2015 and January 2016 are used to evaluate the operational forecasts of the Antarctic Mesoscale Prediction System (AMPS) and new simulations with the Polar Weather Research and Forecasting Model (WRF) 3.9.1. The Polar WRF 3.9.1 simulations are conducted with the WRF single-moment 5-class microphysics (WSM5C) used by the AMPS and with newer generation microphysics schemes. The AMPS simulates few liquid clouds during summer at the WAIS Divide, which is inconsistent with observations of frequent low-level liquid clouds. Polar WRF 3.9.1 simulations show that this result is a consequence of WSM5C. More advanced microphysics schemes simulate more cloud liquid water and produce stronger cloud radiative forcing, resulting in downward longwave and shortwave radiation at the surface more in agreement with observations Similarly, increased cloud fraction is simulated with the more advanced microphysics schemes. All of the simulations, however, produce smaller net cloud fractions than observed. Ice water paths vary less between the simulations than liquid water paths. The colder and drier atmosphere driven by the Global Forecast System (GFS) initial and boundary conditions for AMPS forecasts produces lesser cloud amounts than the Polar WRF 3.9.1 simulations driven by ERA-Interim.


领域地球科学
收录类别SCI-E
WOS记录号WOS:000489561300003
WOS关键词MIXED-PHASE STRATOCUMULUS ; ROSS ICE SHELF ; PART I ; SEA-ICE ; PARAMETERIZATION ; CLIMATE ; SURFACE ; PRECIPITATION ; PENINSULA ; MOISTURE
WOS类目Environmental Sciences ; Meteorology & Atmospheric Sciences
WOS研究方向Environmental Sciences & Ecology ; Meteorology & Atmospheric Sciences
引用统计
被引频次:31[WOS]   [WOS记录]     [WOS相关记录]
文献类型期刊论文
条目标识符http://119.78.100.173/C666/handle/2XK7JSWQ/187592
专题地球科学
作者单位1.Ohio State Univ, Byrd Polar & Climate Res Ctr, Polar Meteorol Grp, Columbus, OH 43210 USA;
2.Ohio State Univ, Dept Geog, Atmospher Sci Program, Columbus, OH 43210 USA;
3.Penn State Univ, Dept Meteorol & Atmospher Sci, University Pk, PA 16802 USA;
4.Univ Calif San Diego, Scripps Inst Oceanog, La Jolla, CA 96802 USA
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Hines, Keith M.,Bromwich, David H.,Wang, Sheng-Hung,et al. Microphysics of summer clouds in central West Antarctica simulated by the Polar Weather Research and Forecasting Model (WRF) and the Antarctic Mesoscale Prediction System (AMPS)[J]. ATMOSPHERIC CHEMISTRY AND PHYSICS,2019,19(19):12431-12454.
APA Hines, Keith M.,Bromwich, David H.,Wang, Sheng-Hung,Silber, Israel,Verlinde, Johannes,&Lubin, Dan.(2019).Microphysics of summer clouds in central West Antarctica simulated by the Polar Weather Research and Forecasting Model (WRF) and the Antarctic Mesoscale Prediction System (AMPS).ATMOSPHERIC CHEMISTRY AND PHYSICS,19(19),12431-12454.
MLA Hines, Keith M.,et al."Microphysics of summer clouds in central West Antarctica simulated by the Polar Weather Research and Forecasting Model (WRF) and the Antarctic Mesoscale Prediction System (AMPS)".ATMOSPHERIC CHEMISTRY AND PHYSICS 19.19(2019):12431-12454.
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