An anticyclonic point of view on low-level tropospheric long-range transport

Wolfgang E. Raatz
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引用次数: 23

Abstract

Research on Arctic haze has provided an example when anticyclones may play a dominant role in carrying out low-level tropospheric long-range transport. This dominant role of anticyclones in transporting Arctic haze may be the result of the unique geographic and climatological situation existing during winter/spring in which both the huge Eurasian continent and the adjacent ice-covered Arctic Ocean tend to be regions where anticyclones form and exist over long periods of the winter and spring seasons. It is assumed that the seasonal variation of transport mechanisms provided by anticyclones is the primary cause for the seasonal variation of Arctic haze. Centers of anticyclones are the regions where air masses form and obtain their characteristics, both meteorological and chemical, due to the aerosols and gases released into the air. Transport within an air flow along the edges of quasi-stationary anticyclones will remain under stable atmospheric conditions, hence, dilution, lifting and removal of aerosols and gases will be less compared to a transport within the influence of a cyclonic pressure system. According to the concept of isentropic flow, anticyclones may dominate only low-level transport, whereas cyclones may be more important in controlling transport at upper tropospheric levels.

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对流层低层远程输送的反气旋观点
北极雾霾的研究提供了一个例子,说明反气旋可能在进行对流层低层远程输送中发挥主导作用。反气旋在输送北极雾霾中的主导作用可能是由于冬季/春季存在独特的地理和气候情况,在这种情况下,巨大的欧亚大陆和邻近的冰雪覆盖的北冰洋往往是反气旋形成和长期存在的地区。认为反气旋提供的输送机制的季节变化是造成北极雾霾季节变化的主要原因。由于气溶胶和气体释放到空气中,反气旋中心是气团形成并获得其气象和化学特征的区域。在稳定的大气条件下,沿准静止反气旋边缘的气流内的输送将保持不变,因此,与气旋压力系统影响下的输送相比,气溶胶和气体的稀释、提升和去除将更少。根据等熵流的概念,反气旋可能只主导低层输送,而气旋在控制对流层高层输送方面可能更为重要。
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