4.6 Article

Data Assimilation of AOD and Estimation of Surface Particulate Matters over the Arctic

期刊

APPLIED SCIENCES-BASEL
卷 11, 期 4, 页码 -

出版社

MDPI
DOI: 10.3390/app11041959

关键词

CMAQ model; MODIS; AERONET; aerosol optical depth (τ ); optimal interpolation; Arctic; data assimilation; PMs

资金

  1. National Research Foundation of Korea Grant from the Korean Government (MSIT
  2. the Ministry of Science and ICT) [NRF-2016M1A5A1901769, KOPRIPN20081]

向作者/读者索取更多资源

This study calculated more accurate information on aerosol optical depth (AOD) using the optimal interpolation method, and estimated more realistic levels of surface particulate matters over the Arctic. The newly inferred monthly averages of PM10 and PM2.5 showed a significant increase compared to the modeled PMs.
In this study, more accurate information on the levels of aerosol optical depth (AOD) was calculated from the assimilation of the modeled AOD based on the optimal interpolation method. Additionally, more realistic levels of surface particulate matters over the Arctic were estimated using the assimilated AOD based on the linear relationship between the particulate matters and AODs. In comparison to the MODIS observation, the assimilated AOD was much improved compared with the modeled AOD (e.g., increase in correlation coefficients from -0.15-0.26 to 0.17-0.76 over the Arctic). The newly inferred monthly averages of PM10 and PM2.5 for April-September 2008 were 2.18-3.70 mu g m(-3) and 0.85-1.68 mu g m(-3) over the Arctic, respectively. These corresponded to an increase of 140-180%, compared with the modeled PMs. In comparison to in-situ observation, the inferred PMs showed better performances than those from the simulations, particularly at Hyytiala station. Therefore, combining the model simulation and data assimilation provided more accurate concentrations of AOD, PM10, and PM2.5 than those only calculated from the model simulations.

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