최진용 교수
Jin Yung Choi
서울대학교 조경·지역시스템공학부 · 환경과학
연구실 소개
최진용 교수의 연구실은 수자원 관리와 환경 시스템의 지속 가능성을 위한 지리정보시스템(GIS) 기반의 공간결정지원시스템(SDSS) 개발과 함께, 농업용 소형 유역에서의 연속 강수유출 모델링을 연구하고 있습니다. 특히, 열전소재 및 나노소재 기반의 유연한 열전 발전소의 설계와 특성 분석을 통해 에너지 수확 기술의 혁신을 추구하고 있으며, 농촌 지역의 정착환경 개선과 지속 가능한 발전을 위한 농촌 편익자원의 가치 재발굴에도 기여하고 있습니다. 이는 기술적 혁신과 사회적 가치 창출을 융합한 종합적 연구 분야입니다.
연구 현황
연구 성과 추이
표시된 성과는 수집된 데이터 기준으로 산출되며, 일부 차이가 있을 수 있습니다.
주요 논문
15Geographic Information Systems (GIS) have been widely used for spatial data manipulation for hydrologic model operations and as a supporting tool to develop spatial decision support systems (SDSS). Information technologies, including GIS and the Internet, have provided opportunities to overcome many of the limitations of computer-based models in terms of data preparation and visualisation, and provide the possibility to create integrated SDSS. This paper examines the relationship between changes
Abstract A cell‐based long‐term hydrological model (CELTHYM) that can be integrated with a geographical information system (GIS) was developed to predict continuous stream flow from small agricultural watersheds. The CELTHYM uses a cell‐by‐cell soil moisture balance approach. For surface runoff estimation, the curve number technique considering soil moisture on a daily basis was used, and release rate was used to estimate baseflow. Evapotranspiration was computed using the FAO modified Penman eq
ABSTRACT: To adequately manage impacts of ongoing or future land use changes in a watershed, the magnitude of their hydrologic impacts needs to be assessed. A grid based daily streamflow model was calibrated with two years of observed streamflow data, using time periods when land use data are available and verified by comparison of model predictions with observed streamflow data. Streamflow data were separated into direct runoff and baseflow to estimate the impacts of urbanization on each hydrol
Abstract This paper demonstrates that thermal energy radiated from a human finger can be converted efficiently into electricity by a nanocrystal (NC) thin film that substantially suppresses thermal conduction, but still allows electric conduction. The converting efficiencies of the chalcogenide NC thin films with dimensions 40 µm × 20 µm × 20 nm, prepared on flexible substrates by a solution process, are maximized by adjusting the NC size. A Seebeck coefficient of S = 1829 µV K −1 , and a dimens
This study demonstrates the fabrication and characterization of a flexible thermoelectric (TE) power generator composed of silicon nanowires (SiNWs) fabricated by top‐down method and discusses its strain‐dependence analysis. The Seebeck coefficients of the p‐ and n‐type SiNWs used to form a pn‐module are 156.4 and −146.1 µV K −1 , respectively. The maximum power factors of the p‐ and n‐type SiNWs are obtained as 8.79 and 8.87 mW (m K 2 ) −1 , respectively, under a convex bending of 1.11%, respec
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