[Objective] To comprehensively assess the groundwater quality in typical arid grassland. [Method] Based on the survey of pollution sources and analysis of onsite water quality monitoring of Darhan Muminggan United Ban...[Objective] To comprehensively assess the groundwater quality in typical arid grassland. [Method] Based on the survey of pollution sources and analysis of onsite water quality monitoring of Darhan Muminggan United Banner (Damao County) which situated in the inland river basin at the north foot of Yinshan Mountain, the Nemero index method was used to assess the groundwater quality of this area, and the causes for the pollution were also analyzed. [Result] The groundwater quality in Damao County is between poor and very poor. [Conclusion] This study laid the foun- dation for the control of groundwater pollution in Damao County.展开更多
Sand/dust storms are some of the main hazards in arid and semi-arid zones. These storms also influence global environmental changes. By field observations, empirical statistics, and numerical simulations, pioneer rese...Sand/dust storms are some of the main hazards in arid and semi-arid zones. These storms also influence global environmental changes. By field observations, empirical statistics, and numerical simulations, pioneer researchers on these natural events have concluded the existence of a positive relationship between thermodynamic effects and sand/dust storms. Thermodynamic effects induce an unsteady stratified atmosphere to influence the process of these storms. However, studies on the relationship of thermodynamic effects with particles (i.e., sand and dust) are limited. In this article, wind tunnel with heating was used to simulate the quantitative relationship between thermodynamic effects and particle movement on different surfaces. Compared with the cold state, the threshold wind velocity of particles is found to be significantly decrease under the hot state. The largest decrease percentage exceedes 9% on fine and coarse sand surfaces. The wind velocity also has a three-power function in the sand transport rate under the hot state with increased sand transport. Thermodynamic effects are stronger on loose surfaces and fine particles, but weaker on compacted surfaces and coarse particles.展开更多
基金Supported by the National Natural Science Foundation of China (51009098,50779040)the Special Research Fund of China Institute of Water Resources and Hydropower Research (KW2010010701)~~
文摘[Objective] To comprehensively assess the groundwater quality in typical arid grassland. [Method] Based on the survey of pollution sources and analysis of onsite water quality monitoring of Darhan Muminggan United Banner (Damao County) which situated in the inland river basin at the north foot of Yinshan Mountain, the Nemero index method was used to assess the groundwater quality of this area, and the causes for the pollution were also analyzed. [Result] The groundwater quality in Damao County is between poor and very poor. [Conclusion] This study laid the foun- dation for the control of groundwater pollution in Damao County.
基金Under the auspices of National Natural Science Foundation of China (No. 40930741, 41071009, 41001005)Knowledge Innovation Programs of Chinese Academy of Sciences (No. KZCX2-YW-329)
文摘Sand/dust storms are some of the main hazards in arid and semi-arid zones. These storms also influence global environmental changes. By field observations, empirical statistics, and numerical simulations, pioneer researchers on these natural events have concluded the existence of a positive relationship between thermodynamic effects and sand/dust storms. Thermodynamic effects induce an unsteady stratified atmosphere to influence the process of these storms. However, studies on the relationship of thermodynamic effects with particles (i.e., sand and dust) are limited. In this article, wind tunnel with heating was used to simulate the quantitative relationship between thermodynamic effects and particle movement on different surfaces. Compared with the cold state, the threshold wind velocity of particles is found to be significantly decrease under the hot state. The largest decrease percentage exceedes 9% on fine and coarse sand surfaces. The wind velocity also has a three-power function in the sand transport rate under the hot state with increased sand transport. Thermodynamic effects are stronger on loose surfaces and fine particles, but weaker on compacted surfaces and coarse particles.