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安徽省持续性区域霾污染的时空分布特征 被引量:12
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作者 石春娥 张浩 +1 位作者 杨元建 张宏群 《中国环境科学》 EI CAS CSSCI CSCD 北大核心 2018年第4期1231-1242,共12页
根据天气和气候特征,将安徽省分为沿淮淮北、江淮之间和沿江江南3个子区,并定义了持续性区域性霾过程.基于气象、环保及遥感资料,分析了安徽省持续性区域性霾过程及相应的气溶胶污染的时空分布特征.结果表明,江淮之间和沿江江南区域性... 根据天气和气候特征,将安徽省分为沿淮淮北、江淮之间和沿江江南3个子区,并定义了持续性区域性霾过程.基于气象、环保及遥感资料,分析了安徽省持续性区域性霾过程及相应的气溶胶污染的时空分布特征.结果表明,江淮之间和沿江江南区域性霾日数自1980年开始总体呈增多趋势,沿淮淮北2000年开始增加趋势明显;1980年以来,城市持续性霾过程呈增多趋势,但城市之间差异较大;2000年之后持续性区域性霾过程明显增多,最长过程可达10d以上.62%以上的持续性区域性霾过程出现在冬季;江淮之间次数最多,沿江江南次数最少.区域性霾天气常对应着大范围的高湿、小风情况,并伴随着高浓度气溶胶污染,其光学厚度大于0.9,约是晴空天的2.3倍,气溶胶主要集中在400m以下,如近地面区域性霾天的消光系数是普通霾天的2~2.5倍,晴空天的3~5倍;地面PM2.5污染而言,区域性霾天至少有一个或以上的城市AQI会达到轻度以上污染等级的概率超过了75%. 展开更多
关键词 持续性区域性霾 气溶胶污染 AOD 消光系数 AQI 安徽
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Influence of urbanization on the thermal environment of meteorological station:Satellite-observed evidence 被引量:7
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作者 shi Tao HUANG Yong +2 位作者 WANG Hong shi chun-e YANG Yuan-Jian 《Advances in Climate Change Research》 SCIE CSCD 2015年第1期7-15,共9页
In this paper, five national meteorological stations in Anhui province are taken as typical examples to explore the effects of local urbanization on their thermal environment by using Landsat data from 1990 to 2010. S... In this paper, five national meteorological stations in Anhui province are taken as typical examples to explore the effects of local urbanization on their thermal environment by using Landsat data from 1990 to 2010. Satellite-based land use/land cover(LULC), land surface temperature(LST), normalized difference vegetation index(NDVI) are used to investigate the effects. The study shows that LULC around meteorological stations changed significantly due to urban expansion. Fast urbanization is the main factor that affects the spatial-temporal distribution of thermal environment around meteorological stations. Moreover, the normalized LST and NDVI exhibit strong inverse correlations around meteorological stations, so the variability of LST can be monitored through evaluating the variability of NDVI. In addition, station-relocation plays an important role in improving representativeness of thermal environment. Notably, the environment representativeness was improved, but when using the data from the station to study climate change, the relocation-induced inhomogeneous data should be considered and adjusted. Consequently,controlling the scale and layout of the urban buildings and constructions around meteorological stations is an effective method to ameliorate observational thermal environment and to improve regional representativeness of station observation. The present work provides observational evidences that high resolution Landsat images can be used to evaluate the thermal environment of meteorological stations. 展开更多
关键词 快速城市化 卫星观测 热环境 气象站 证据 归一化植被指数 土地利用/土地覆盖 陆地卫星资料
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