globalchange  > 气候变化事实与影响
DOI: 10.1016/j.atmosenv.2014.09.064
Scopus记录号: 2-s2.0-84905232063
论文题名:
Photochemical grid model performance with varying horizontal grid resolution and sub-grid plume treatment for the Martins Creek near-field SO2 study
作者: Baker K; R; , Hawkins A; , Kelly J; T
刊名: Atmospheric Environment
ISSN: 0168-2563
EISSN: 1573-515X
出版年: 2014
卷: 99
起始页码: 148
结束页码: 158
语种: 英语
英文关键词: Air quality modeling ; CAMx ; Dispersion ; Grid resolution ; Martins Creek ; Sub-grid plume
Scopus关键词: Air quality modeling ; CAMx ; Grid resolution ; Martins Creek ; Sub-grids ; Dispersion (waves) ; sulfur dioxide ; dispersion ; meteorology ; mixing ratio ; numerical model ; performance assessment ; photochemistry ; prediction ; sulfur dioxide ; terrain ; Article ; boundary layer ; cell size ; dispersion ; meteorology ; photochemistry ; plume ; pollutant ; surface property
Scopus学科分类: Environmental Science: Water Science and Technology ; Earth and Planetary Sciences: Earth-Surface Processes ; Environmental Science: Environmental Chemistry
英文摘要: Near source modeling is needed to assess primary and secondary pollutant impacts from single sources and single source complexes. Source-receptor relationships need to be resolved from tens of meters to tens of kilometers. Dispersion models are typically applied for near-source primary pollutant impacts but lack complex photochemistry. Photochemical models provide a realistic chemical environment but are typically applied using grid cell sizes that may be larger than the distance between sources and receptors. It is important to understand the impacts of grid resolution and sub-grid plume treatments on photochemical modeling of near-source primary pollution gradients. Here, the CAMx photochemical grid model is applied using multiple grid resolutions and sub-grid plume treatment for SO2 and compared with a receptor mesonet largely impacted by nearby sources approximately 3-17km away in a complex terrain environment. Measurements are compared with model estimates of SO2 at 4- and 1-km resolution, both with and without sub-grid plume treatment and inclusion of finer two-way grid nests. Annual average estimated SO2 mixing ratios are highest nearest the sources and decrease as distance from the sources increase. In general, CAMx estimates of SO2 do not compare well with the near-source observations when paired in space and time. Given the proximity of these sources and receptors, accuracy in wind vector estimation is critical for applications that pair pollutant predictions and observations in time and space. In typical permit applications, predictions and observations are not paired in time and space and the entire distributions of each are directly compared. Using this approach, model estimates using 1-km grid resolution best match the distribution of observations and are most comparable to similar studies that used dispersion and Lagrangian modeling systems. Model-estimated SO2 increases as grid cell size decreases from 4km to 250m. However, it is notable that the 1-km model estimates using 1-km meteorological model input are higher than the 1-km model simulation that used interpolated 4-km meteorology. The inclusion of sub-grid plume treatment did not improve model skill in predicting SO2 in time and space and generally acts to keep emitted mass aloft. © 2014.
Citation statistics:
资源类型: 期刊论文
标识符: http://119.78.100.158/handle/2HF3EXSE/80520
Appears in Collections:气候变化事实与影响

Files in This Item:

There are no files associated with this item.


作者单位: U.S. Environmental Protection Agency, Office of Air Quality Planning and Standards, Research Triangle ParkNC, United States; U.S. Environmental Protection Agency, Region 7, Lenexa, KS, United States

Recommended Citation:
Baker K,R,, Hawkins A,et al. Photochemical grid model performance with varying horizontal grid resolution and sub-grid plume treatment for the Martins Creek near-field SO2 study[J]. Atmospheric Environment,2014-01-01,99
Service
Recommend this item
Sava as my favorate item
Show this item's statistics
Export Endnote File
Google Scholar
Similar articles in Google Scholar
[Baker K]'s Articles
[R]'s Articles
[, Hawkins A]'s Articles
百度学术
Similar articles in Baidu Scholar
[Baker K]'s Articles
[R]'s Articles
[, Hawkins A]'s Articles
CSDL cross search
Similar articles in CSDL Cross Search
[Baker K]‘s Articles
[R]‘s Articles
[, Hawkins A]‘s Articles
Related Copyright Policies
Null
收藏/分享
所有评论 (0)
暂无评论
 

Items in IR are protected by copyright, with all rights reserved, unless otherwise indicated.