황진환 교수
Jin Hwan Hwang
서울대학교 건설환경공학부 · 지구·행성과학
연구실 소개
황진환 교수의 연구실은 수문학, 환경유체역학 및 수질 관리 분야에서 활동하며, 주로 인공호수 및 만성수역의 수질 변화 메커니즘을 수치모의와 현장 측정을 융합해 연구하고 있습니다. 특히 수류체류시간, 수온층류, 식생 배열이 수질에 미치는 영향을 중심으로 한계가 있는 자연환경 외부 환경에서의 수리적 특성과 오염물질 확산 메커니즘을 규명하고자 합니다. 또한 해저 퇴적물 플럼, 파도에 의한 사냥 행동, 유체 흐름 내에서의 에너지 전이 등 다양한 유체역학적 현상에 대한 기초 연구도 수행하고 있습니다.
연구 현황
연구 성과 추이
표시된 성과는 수집된 데이터 기준으로 산출되며, 일부 차이가 있을 수 있습니다.
주요 논문
15Abstract In nature, aquatic vegetation is one of the important factors—along with hydraulic characteristics and geometric configuration—determining the dispersion of scalars. Previous research has studied the effects of vegetation on longitudinal dispersion, varying plant population with uniform arrangement. However, since vegetation grows more often in clumped and heterogeneous rather than uniform patterns, the present work investigates the effects of the vegetation arrangement on the flows cha
When mixtures of aggregates and water dredged from the seabed are discharged at the surface into the adjacent water from a barge, coarse sediments sink immediately and fine sediments are suspended forming a plume. Recently, elongated plumes of fine sediment were observed by satellites near a dredging location on the continental shelf. Such plume streaks were longer in certain conditions with seasonality than expected or reported previously. Therefore, the present work studied the appearance of s
The energy evolution in buoyancy-generated turbulence subjected to shear depends on the gradient Richardson number Ri and the stratification number St, which is a ratio of the time scale of the initial buoyancy fluctuations to the time scale of the mean stratification. During an initial period, the flow state evolves as in the unsheared case. After this period, shear generates fluctuating velocity components for St=0.25, but it depletes the fluctuating vertical velocity component and temperature
The semi-enclosed estuary is very susceptible to changes in the physical and environmental characteristics of the inflow from the land. Therefore, continuous and comprehensive monitoring of such changes is necessary for managing the estuary. Nevertheless, the procedure or framework has not been proposed appropriately to determine how many instruments are necessary and where they need to be monitored and standardized to detect critical changes. The present work proposes a systematical strategy fo
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