期刊文献+
共找到1篇文章
< 1 >
每页显示 20 50 100
Anisotropic diffusion of volatile pollutants at air-water interface 被引量:2
1
作者 Li-ping CHEN Jing-tao CHENG Guang-fa DENG 《Water Science and Engineering》 EI CAS CSCD 2013年第2期153-163,共11页
The volatile pollutants that spill into natural waters cause water pollution. Air pollution arises from the water pollution because of volatilization. Mass exchange caused by turbulent fluctuation is stronger in the d... The volatile pollutants that spill into natural waters cause water pollution. Air pollution arises from the water pollution because of volatilization. Mass exchange caused by turbulent fluctuation is stronger in the direction normal to the air-water interface than in other directions due to the large density difference between water and air. In order to explore the characteristics of anisotropic diffusion of the volatile pollutants at the air-water interface, the relationship between velocity gradient and mass transfer rate was established to calculate the turbulent mass diffusivity. A second-order accurate smooth transition differencing scheme (STDS) was proposed to guarantee the boundedness for the flow and mass transfer at the air-water interface. Simulations and experiments were performed to study the trichloroethylene (C2HC13) release. By comparing the anisotropic coupling diffusion model, isotropic coupling diffusion model, and non-coupling diffusion model, the features of the transport of volatile pollutants at the air-water interface were determined. The results show that the anisotropic coupling diffusion model is more accurate than the isotropic coupling diffusion model and non-coupling diffusion model. Mass transfer significantly increases with the increase of the air-water relative velocity at a low relative velocity. However, at a higher relative velocity, an increase in the relative velocity has no effect on mass transfer. 展开更多
关键词 volatile pollutant interfacial mass transfer anisotropic diffusion STDS anisotropic coupling diffusion model
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部