GSTDTAP  > 地球科学
DOI10.5194/acp-18-17157-2018
Attributing differences in the fate of lateral boundary ozone in AQMEII3 models to physical process representations
Liu, Peng1; Hogrefe, Christian1; Im, Ulas2; Christensen, Jesper H.2; Bieser, Johannes3; Nopmongcol, Uarporn4; Yarwood, Greg4; Mathur, Rohit1; Roselle, Shawn1; Spero, Tanya1
2018-12-05
发表期刊ATMOSPHERIC CHEMISTRY AND PHYSICS
ISSN1680-7316
EISSN1680-7324
出版年2018
卷号18期号:23页码:17157-17175
文章类型Article
语种英语
国家USA; Denmark; Germany
英文摘要

Increasing emphasis has been placed on characterizing the contributions and the uncertainties of ozone imported from outside the US. In chemical transport models (CTMs), the ozone transported through lateral boundaries (referred to as LB ozone hereafter) undergoes a series of physical and chemical processes in CTMs, which are important sources of the uncertainty in estimating the impact of LB ozone on ozone levels at the surface. By implementing inert tracers for LB ozone, the study seeks to better understand how differing representations of physical processes in regional CTMs may lead to differences in the simulated LB ozone that eventually reaches the surface across the US. For all the simulations in this study (including WRF/CMAQ, WRF/CAMx, COSMO-CLM/CMAQ, and WRF/DEHM), three chemically inert tracers that generally represent the altitude ranges of the planetary boundary layer (BC1), free troposphere (BC2), and upper troposphere-lower stratosphere (BC3) are tracked to assess the simulated impact of LB specification.


Comparing WRF/CAMx with WRF/CMAQ, their differences in vertical grid structure explain 10 %-60 % of their seasonally averaged differences in inert tracers at the surface. Vertical turbulent mixing is the primary contributor to the remaining differences in inert tracers across the US in all seasons. Stronger vertical mixing in WRF/CAMx brings more BC2 downward, leading to higher BCT (BCT = BC1+ BC2 + BC3) and BC2/BCT at the surface in WRF/CAMx. Meanwhile, the differences in inert tracers due to vertical mixing are partially counteracted by their difference in subgrid cloud mixing over the southeastern US and the Gulf Coast region during summer. The process of dry deposition adds extra gradients to the spatial distribution of the differences in DM8A BCT by 5-10 ppb during winter and summer.


COSMO-CLM/CMAQ and WRF/CMAQ show similar performance in inert tracers both at the surface and aloft through most seasons, which suggests similarity between the two models at process level. The largest difference is found in summer. Sub-grid cloud mixing plays a primary role in their differences in inert tracers over the southeastern US and the oceans in summer. Our analysis of the vertical profiles of inert tracers also suggests that the model differences in dry deposition over certain regions are offset by the model differences in vertical turbulent mixing, leading to small differences in inert tracers at the surface in these regions.


领域地球科学
收录类别SCI-E
WOS记录号WOS:000452160300002
WOS关键词BACKGROUND OZONE ; INTERCONTINENTAL TRANSPORT ; EMISSIONS ; MULTISCALE ; CHEMISTRY ; SYSTEM ; CAMX
WOS类目Environmental Sciences ; Meteorology & Atmospheric Sciences
WOS研究方向Environmental Sciences & Ecology ; 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/30821
专题地球科学
作者单位1.US EPA, Natl Exposure Res Lab, Res Triangle Pk, NC 27711 USA;
2.Aarhus Univ, Dept Environm Sci, Frederiksborgvej 399, DK-4000 Roskilde, Denmark;
3.Helmholtz Zentrum Geesthacht, Inst Coastal Res, Max Planck Str 1, D-21502 Geesthacht, Germany;
4.Ramboll, 7250 Redwood Blvd,Suite 105, Novato, CA 94945 USA
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Liu, Peng,Hogrefe, Christian,Im, Ulas,et al. Attributing differences in the fate of lateral boundary ozone in AQMEII3 models to physical process representations[J]. ATMOSPHERIC CHEMISTRY AND PHYSICS,2018,18(23):17157-17175.
APA Liu, Peng.,Hogrefe, Christian.,Im, Ulas.,Christensen, Jesper H..,Bieser, Johannes.,...&Spero, Tanya.(2018).Attributing differences in the fate of lateral boundary ozone in AQMEII3 models to physical process representations.ATMOSPHERIC CHEMISTRY AND PHYSICS,18(23),17157-17175.
MLA Liu, Peng,et al."Attributing differences in the fate of lateral boundary ozone in AQMEII3 models to physical process representations".ATMOSPHERIC CHEMISTRY AND PHYSICS 18.23(2018):17157-17175.
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