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Estimation of anthropogenic heat emission over South Korea using a statistical regression method
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  • 作者:Sang-Hyun Lee ; Soon-Tae Kim
  • 关键词:Anthropogenic heat ; anthropogenic pollutants ; statistical regression method ; surface energy balance ; urban heat island ; waste heat
  • 刊名:Asia-Pacific Journal of Atmospheric Sciences
  • 出版年:2015
  • 出版时间:May 2015
  • 年:2015
  • 卷:51
  • 期:2
  • 页码:157-166
  • 全文大小:2,515 KB
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  • 作者单位:Sang-Hyun Lee (1)
    Soon-Tae Kim (2)

    1. Department of Atmospheric Science, Kongju National University, 182 Singwan-dong, Gongju-si, Chungnam, 314-701, Korea
    2. Department of Environmental Engineering, Ajou University, Suwon, Korea
  • 刊物类别:Earth and Environmental Science
  • 刊物主题:Earth sciences
    Geophysics and Geodesy
    Meteorology and Climatology
  • 出版者:Korean Meteorological Society, co-published with Springer
  • ISSN:1976-7951
文摘
Anthropogenic heating by human activity is one of the key contributing factors in forming urban heat islands, thus inclusion of the heat source plays an important role in urban meteorological and environmental modeling. In this study, gridded anthropogenic heat flux (AHF) with high spatial (1-km) and temporal (1-hr) resolution is estimated for the whole South Korea region in year 2010 using a statistical regression method which derives based on similarity of anthropogenic air pollutant emissions and AHF in their emission inventories. The bottom-up anthropogenic pollutant emissions required for the regression method are produced using the intensive Korean air pollutants emission inventories. The calculated regression-based AHF compares well with the inventory-based AHF estimation for the Gyeong-In region, demonstrating that the statistical regression method can reasonably represent spatio-temporal variation of the AHF within the region. The estimated AHF shows that for major Korean cities (Seoul, Busan, Daegu, Gwangju, Daejeon, and Ulsan) the annual mean AHF range 10-0 Wm? on a grid scale and 20-0W m? on a city-scale. The winter AHF are larger by about 22% than that in summer, while the weekday AHF are larger by 4-% than the weekend AHF in the major Korean cities. The gridded AHF data estimated in this study can be used in mesoscale meteorological and environmental modeling for the South Korea region.

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