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首页> 外文期刊>Advances in Meteorology >Double Compressions of Atmospheric Depth by Geopotential Tendency, Vorticity, and Atmospheric Boundary Layer Affected Abrupt High Particulate Matter Concentrations at a Coastal City for a Yellow Dust Period in October
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Double Compressions of Atmospheric Depth by Geopotential Tendency, Vorticity, and Atmospheric Boundary Layer Affected Abrupt High Particulate Matter Concentrations at a Coastal City for a Yellow Dust Period in October

机译:在十月份的黄色沙尘期中,沿海城市的地势趋向,涡度和大气边界层对大气深度的双重压缩影响突然高颗粒物浓度。

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Using GRIMM-aerosol sampler, NOAA-HYSPLIT model, and 3D-WRF-3.3 model, the transportation of dusts from Gobi Desert toward Gangneung city, Korea was investigated from 09:00 LST October 27 to 04:00 LST October 28, 2003. Maximum PM10 (PM2.5, PM1) concentration was detected with 3.8 (3.4, 14.1) times higher magnitude than one in non-Yellow Dust period. The combination of dusts transported from the desert under westerly wind with particulate matters and gases from vehicles on the road of the city caused high PM concentrations near the ground surface at 09:00 LST and their maxima at 17:00 LST near sunset with further pollutants from heating boilers in the resident area. Positive geopotential tendency at the 500 hPa level of the city (∂Φ/∂t; m day−1) corresponding to negative vorticity of-4×10-5 sec−1(-2.5×10-5 sec−1) at 0900 LST (21:00 LST; at night) was +83 m day−1(+30 m day−1) and it caused atmospheric depth between 500 hPa level and the ground surface to be vertically expanded. However, its net reduction to −53 m/12 hrs until 21:00 LST indicated synoptic-scale atmospheric layer to be vertical shrunken, resulting in the increase of PM concentrations at 17:00 LST. Simultaneously, much shallower microscale stable nocturnal surface inversion layer (NSIL) than daytime thermal internal boundary layer induced particulate matters to be merged inside the NSIL, resulting in maximum PM concentrations at 17:00 LST.
机译:使用GRIMM气溶胶采样器,NOAA-HYSPLIT模型和3D-WRF-3.3模型,调查了2003年10月27日09:00 LST到2003年10月28日04:00 LST从戈壁滩向韩国江陵市的粉尘运输。在非黄色粉尘时期,检测到的最大PM10(PM2.5,PM1)浓度是其最高浓度的3.8(3.4,14.1)倍。西风吹拂下从沙漠运来的粉尘与城市道路上的车辆产生的气体产生的颗粒物结合在一起,导致下午09:00 LST地面附近的PM浓度较高,日落时分17:00 LST处的最高浓度以及其他污染物来自居民区的取暖锅炉。 0900时城市500 hPa水平的正地势趋势(∂Φ/∂t; m day-1)对应于-4×10-5 sec-1(-2.5×10-5 sec-1)的负涡度LST(LST 21:00;晚上)为+83μm·day-1(+30μm·day-1),这使500 hPa水平和地面之间的大气深度垂直扩展。但是,直到21:00 LST净减少到-53μm/ 12hrs,表明天气尺度的大气层垂直收缩,导致LST 17:00的PM浓度增加。同时,比白天的热内边界层更薄的微米级稳定夜间活动表面反转层(NSIL)引起颗粒物质在NSIL内部融合,从而在LST 17:00达到最大PM浓度。

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