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        검색결과 244

        241.
        1997.10 KCI 등재 서비스 종료(열람 제한)
        인공배수유역의 강우유출모의를 위한 물리적 수문모형이 DEM으로 표현된 지형정보에 근거한 TOPMODEL로부터 개발되었다. 인공배수유역에서일어날 수 있는 아홉 가지 유출 발생 시나리오가 제안되었고, 또 이것을 모형의 개발을 위해 사용했다. 모형은 배수관을 통한 유출, 지하수 유출, 지표수 유출 등으로 유출과정을 나누어서 수문거동을 추적할 수 있도록 구성되어 있다. 제안된 모형은 유역의 물리적 특성을 잘 기술하고 있고 수문학적 거동에 보다 향상된 추출능력을
        242.
        1997.06 KCI 등재 서비스 종료(열람 제한)
        본 연구는 중소하천 유역에서 강우-유출과정의 모의절 위한 정도 높은 개념적 모형을 결정하기 위하여 기존의 개념적 선형 모형인 Clark 모형, Nash 모형과 개념적 비선형 모형인 Laurenson 모형과 WBN 모형을 위천 유역을 대상으로 적용 및 비교검토를 하였다. 선형 모형에서 산정된 매개변수들의 변동성은 비선형 모형의 매개변수의 변동성 보다 크게 나타났으며, 계측유역에서 4개 개념적 모형으로부터 합성한 수문곡선을 분석한 결과 첨두유량은 4개 모형
        243.
        1996.09 KCI 등재 서비스 종료(열람 제한)
        The purpose of this study Is to develop water quality management system fort a farm village stream. The framework design of the system and the ecological monitoring of a test watershed were carried out, The system consists of GIS(Geographic Information System ), database, pollution source management, water quality and hydrologic analysis. Suri watershed located on Idong, Yongin city, Kyunggi Province, was selected as the test watershed for the application of the system. The fifteen's monitoring stations were chooses at up- and down-stream of the watershed. The results of an aquatic ecological monitoring were analyzed by the GPI(Group Pollution Index) method. The GPI revealed that water quality was varied within the stream. GPI and DO map for the watershed stream were developed, These maps facilitated to analyze the spatial distribution of the water quality.
        244.
        1996.09 KCI 등재 서비스 종료(열람 제한)
        Monitoring techniques for afro-ecological environments were studied, Hydrologic and ecological components in conjunction with water quality were monitored in the Balkan watershed. The hydrologic monitoring program consists of four water level gauging stations along creeks and stream at the watershed having 26.5 km2. Stage - storage relationship of reservoir, rainfall amount of the watershed, and rating curve of the stream gauging stations were established. Soil type, land use, hydrologic soil group, population and economic activities within the watershed were surveyed. Water quality data from the streams were sampled weekly and chemical analysis was conducted. Temporal variations of water quality were investigated and water quality map of each reach of stream was made to identify spatial variations. Seasonal and spatial variations of vegetation densities along stream in the watershed were investigated using grid, Density variations of insect species such as arthropod, flying insect, spider spices, rice insects were also monitored to determine seansonal surveying density. These monitored data will be used to develop monitoring techi%ues and afro - ecological environment models.
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