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http://dx.doi.org/10.5338/KJEA.2009.28.1.001

Assessment of Environmental Conservation Function using Changes of Land Use Area and Surface Temperature in Agricultural Field  

Ko, Byong-Gu (Department of Agricultural Environment, National Academy of Agricultural Science(NAAS), RDA)
Kang, Kee-Kyung (Department of Agricultural Environment, National Academy of Agricultural Science(NAAS), RDA)
Hong, Suk-Young (Department of Agricultural Environment, National Academy of Agricultural Science(NAAS), RDA)
Lee, Deog-Bae (Department of Agricultural Environment, National Academy of Agricultural Science(NAAS), RDA)
Kim, Min-Kyeong (Department of Agricultural Environment, National Academy of Agricultural Science(NAAS), RDA)
Seo, Myung-Chul (Department of Functional Crop, National Institute of Crop Science(NIAS), RDA)
Kim, Gun-Yeob (Department of Agricultural Environment, National Academy of Agricultural Science(NAAS), RDA)
Park, Kwang-Lai (Department of Agricultural Environment, National Academy of Agricultural Science(NAAS), RDA)
Lee, Jung-Taek (Department of Agricultural Environment, National Academy of Agricultural Science(NAAS), RDA)
Publication Information
Korean Journal of Environmental Agriculture / v.28, no.1, 2009 , pp. 1-8 More about this Journal
Abstract
This study was aimed at assess environmental conservation functions by analyzing the change of land use areas in agricultural fields between 1999 and 2006, and comparing land surface temperature distribution between 1994 and 2006 in Yongin city. Land use maps of Yongin city were obtained from soil maps for 1999, Quickbird satellite images(less than 1 m) and parcel map for 2006. The land use area for Yongin city was in the order of forest > paddy field > upland > residence & building in 1999, and forest > residence & building > paddy field > upland in 2006. Decrease of paddy and upland fields reduced 34% and 41% of the capability of agricultural multifunctionality as to environment including flood control, groundwater recharge, and air cooling. Land surface temperature(LST) was derived from Landsat TM thermal infrared band acquired in September of 1994 and 2006 and classified into three grades. The results impplied that green vegetation in agricultural field and forest play an important role to reduce land surface temperature in warm season.
Keywords
change detection; land use; agricultural multifunctionality; land surface temperature; Landsat TM;
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