科技报告详细信息
Effects of Scavenging, Entrainment, and Aqueous Chemistry on Peroxides and Formaldehyde in Deep Convective Outflow over the Central and Southeast U.S.
Bela, Megan M ; Barth, Mary C ; Toon, Owen Brian ; Fried, Alan ; Ziegler, Conrad ; Cummings, Kristin A ; Li, Yunyao ; Pickering, Kenneth E ; Homeyer, Cameron R ; Morrison, Hugh(National Center for Atmospheric Research, Boulder, CO, United States)
关键词: ATMOSPHERIC CHEMISTRY;    COMPUTERIZED SIMULATION;    ENTRAINMENT;    MATHEMATICAL MODELS;    STORMS;    TROPOSPHERE;    AEROSOLS;    METHYL COMPOUNDS;    OZONE;    PEROXIDES;   
RP-ID  :  KSC-E-DAA-TN57972
学科分类:大气科学
美国|英语
来源: NASA Technical Reports Server
PDF
【 摘 要 】

Deep convective transport of gaseous precursors to ozone (O3) and aerosols to the upper troposphere is affected by liquid- and mixed-phase scavenging, entrainment of free tropospheric air, and aqueous chemistry. The contributions of these processes are examined using aircraft measurements obtained in storm inflow and outflow during the 2012 Deep Convective Clouds and Chemistry (DC3) experiment combined with high resolution (dx <= 3 km) WRF-Chem simulations of a severe storm, an airmass storm, and a mesoscale convective system (MCS). The simulation results for the MCS suggest that formaldehyde (CH2O) is not retained in ice when cloud water freezes, in agreement with previous studies of the severe storm. By analyzing WRF-Chem trajectories, the effects of scavenging, entrainment, and aqueous chemistry on outflow mixing ratios of CH2O, methyl hydroperoxide (CH3OOH), and hydrogen peroxide (H2O2) are quantified. Liquid-phase microphysical scavenging was the dominant process reducing CH2O and H2O2 outflow mixing ratios in all three storms. Aqueous chemistry did not significantly affect outflow mixing ratios of all three species. In the severe storm and MCS, the higher than expected reductions in CH3OOH mixing ratios in the storm cores were primarily due to entrainment of low background CH3OOH. In the airmass storm, lower CH3OOH and H2O2 scavenging efficiencies (SEs) than in the MCS were partly due to entrainment of higher background CH3OOH and H2O2. Overestimated rain and hail production in WRF-Chem reduces the confidence in ice retention fraction values determined for the peroxides and CH2O.

【 预 览 】
附件列表
Files Size Format View
20180005618.pdf 3280KB PDF download
  文献评价指标  
  下载次数:13次 浏览次数:13次