水动力学研究与进展B辑
水動力學研究與進展B輯
수동역학연구여진전B집
JOURNAL OF HYDRODYNAMICS
2013年
5期
731-736
,共6页
朱红伟%程鹏达%钟宝昌%王道增
硃紅偉%程鵬達%鐘寶昌%王道增
주홍위%정붕체%종보창%왕도증
hydrodynamics%sediment resuspension%Chemical Oxygen Demand (COD)%water pollution
Hydrodynamic effects play a very important role in the contaminants release from sediments. Experiments were perfor-med to study contaminants releasing characteristics due to resuspension. The time-dependent variation of COD concentration and re-lative roles under static and dynamic state of the overlying water were analyzed. Experimental results showed that COD concen-tration in the water column got a striking increment on the dynamic conditions, mainly by reducing the thickness of concentration boundary layer near sediment-water interface and destructing the surface structure of sediment. Hydrodynamics increased contamina-nts release rates and flux in unit time. Before reaching an equilibrium stage, the dynamic release caused by the resuspension was more effective than static one due to molecular diffusion. The release rate of COD increased with flow velocity and decreased with water depth. But at a shallow water depth, wave effects would dominate the causing resuspension, resulting in contaminants release in large quantity. The intensity of pollutant release increased with time in a rather circuitous process. The diffusion of pollutant from internal sediment to the sediment-water interface would maintain the endogenous release effects.