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The Error Analysis of Scale Effect for Dam Submerged Area and the Surrounded Regions  

Lee, Geun-Sang (전주비전대학 지적부동산과)
Choi, Yun-Woong (조선이공대학 토목건설과)
Hwang, Eui-Ho (한국수자원공사)
Chae, Young-Gang ((유)신미건설)
Publication Information
Abstract
A dam is effective in stable supply of water required in daily life and reduction of damage from floods. hut a lot of land or houses arc submerged due to the construction of a darn heavily affecting environment in surrounding areas. In order to improve and support daily life environment. surrounding a dam, many projects have been conducted. and the study has focused on analyzing bow to calculate error characteristics of scale effect for submerged area by using GIS spatial overlay. First, as a result of areal error in submerged area by scale based on a 1/3,000 digital topographic map, it was found that the 1/5,000 digital topographic map is 9.5 times, 9.0 times and 10.5 times more accurate than the 1/25,000 digital topographic map, respectively, in the total of areal error, standard error and areal error for submerged area. Second, as a result of analysis on areal error in areas surrounding a dam, it has been found that Jinan-eup in Jinan-gun registered the largest difference in area within 2km and 2~5km catchment area by recording 13.8 times and 20.6 times, respectively, in the 1/5,000 digital topographic map compared to the 1/25,000 digital topographic map. In addition, in areas out of catchment area within 2km, the area of occupation was very small, so there were no characteristics in error. The out of catchment area, Nami-myeon in Geumsan-gun recorded the largest errors of 31.8 times. Finally, it was found that the ratio of the total areal error in area surrounding a dam, standard error and the total areal error in the entire area using 1,5000 digital topographic map is 7.4 times, 11.8 times and 7.4 times more accurate than the 1/25,000 digital topographic map.
Keywords
Submerged District; Dam Area; Spatial Overlay; Digital Topographic Map;
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Times Cited By KSCI : 6  (Citation Analysis)
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1 이승호, 허인혜, 2003, "대형 댐 건설이 주변 지역의 안개 특성에 미친 영향-주암댐과 충주댐을 사례로", 환경영향평가학회지, 제12권, 제2호, pp. 109-120.
2 황의호, 이근상, 채효석, 고덕구, 2005, "GIS 공간 분석을 이용한 댐 주변지역 지원사업비 산정", 한국지리정보학회지, 제8권, 제4호, pp. 24-32.   과학기술학회마을
3 Geun Sang Lee, Dae Youn Jeon, 2009, "The Analysis of Reduction Efficiency of Soil Erosion and Sediment Yield by a Ginseng Area using GIS Tools", 한국GIS학회지, 제17권, 제4호, pp. 431-443.   과학기술학회마을
4 Geun Sang Lee, Khil-Ha Lee, 2009, "Comparison between a soft and crisp geographic boundary of the soil texture component in hydrologic models", Journal of Hydrologic Engineering, Vol. 14, No. 6, pp. 640-646.   DOI   ScienceOn
5 Tenessee Valley Authority(TVA), 1972, Environmental Statement, Tellico Project, Vol. 1, National Technical Information Service.
6 Vincent Chaplot, Frederic Darboux, Hocine Bourennance, Sophie Leguedois, Norbert Silvera, Konngkeo Phachomphon, 2006, "Accuracy of interpolation techniques for the derivation of digital elevation models in relation to landform types and data density", Geomorphology, Vol. 77, pp. 126-141.   DOI
7 Zhou Lin, Takashi Oguchi, 2006, "DEM analysis on longitudinal and transverse profiles of steep mountainous watersheds", Geomorphology, Vol. 78, pp. 77-89.   DOI   ScienceOn
8 이기웅, 박지만, 2004, "주암댐 주변지역의 친환경 농업 실태와 발전방안", 한국유기농업학회지, 제 12권, 제4호, pp. 377-397.   과학기술학회마을
9 한국수자원공사, 1990, 용담댐 항공사진측량 보고서.
10 이승복, 1995, "댐 주변지역 지원사업을 위한 정책 방향", 국토, pp. 77-84.
11 한국수자원공사, 1995, 다목적댐 주변지역지원사업 업무편람, pp. 3-27.
12 한국수자원공사 용담댐관리단, 용담댐 관리연보, 2009.
13 한종규, 김성필, 장동호, 장태수, 2009, "항공 LiDAR 자료를 이용한 슈퍼태풍 내습시 해운대 해수욕장 인근 도심지역 침수 피해 규모 추정", 한국GIS학회지, 제17권, 제3호, pp. 341-350.   과학기술학회마을
14 허승욱, 우장명, 2005, "대청.충주댐 주변지역의 친환경농업 발전전략", 한국유기농업학회지, 제13 권, 제1호, pp. 53-68.   과학기술학회마을