School of Human Settlements and Civil Engineering, Xi'an Jiaotong University, Xi'an, China.
State Key Laboratory of Severe Weather, Chinese Academy of Meteorological Sciences, Beijing, China.
Sci Total Environ. 2017 Aug 15;592:373-390. doi: 10.1016/j.scitotenv.2017.02.151. Epub 2017 Mar 18.
Urbanization and industrialization in the recent 30years have caused frequent heavy haze pollution in the Guanzhong basin, China during wintertime. Based on the categorized large-scale synoptic situations, the local circulation and its impact on the air pollution in the basin have been investigated using observational data analyses and model simulations with the WRF-CHEM model. The simulated mountain-valley breeze circulations are well established under most of the large-scale synoptic situations in the south-north direction. The downward mountain-breeze not only causes the convergence zone in the basin but also tends to bring the pollutants back from the mountain areas to the basin and enhance pollutants concentrations in the evening. The intensity of the mountain-valley breeze circulations may be different under different synoptic situations, but in general, aside emissions, every pollution event is the synthetic result of the synoptic situation at the large scale and the local circulation at the small scale in the Guanzhong basin.
在过去的 30 年中,城市化和工业化导致中国关中盆地冬季频繁出现严重的雾霾污染。本研究基于分类的大尺度天气形势,利用观测数据分析和 WRF-CHEM 模式模拟,研究了局地环流及其对盆地空气污染的影响。在南北方向的大多数大尺度天气形势下,模拟的山谷风环流都得到了很好的建立。下山风不仅在盆地内造成辐合区,而且往往会将污染物从山区带回盆地,并在傍晚增加污染物浓度。在不同的天气形势下,山谷风环流的强度可能不同,但总的来说,除了排放,关中盆地的每一次污染事件都是大尺度天气形势和局地小尺度环流综合作用的结果。