首页> 外文期刊>Atmospheric environment >Impacts of Asian dust storm associated with the stratosphere-to-troposphere transport in the spring of 2001 and 2002 on dust and tritium variations in Mount Wrangell ice core, Alaska
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Impacts of Asian dust storm associated with the stratosphere-to-troposphere transport in the spring of 2001 and 2002 on dust and tritium variations in Mount Wrangell ice core, Alaska

机译:2001年和2002年春季与平流层到对流层运输有关的亚洲沙尘暴对阿拉斯加Wrangell山冰芯的尘埃和tri变化的影响

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The relation of interannual connection between Asian dust outbreaks and stratosphere-to-troposphere transport (STT) in spring was suggested by the dust and tritium variations in the Mount Wrangell ice core, Alaska in [Yasunari, T.J., Shiraiwa, T., Kanamori, S., Fujii, Y., Igarashi, M., Yamazaki, K., Benson, C.S., Hondoh, T., 2007. Intra-annual variations in atmospheric dust and tritium in the North Pacific region detected from an ice core from Mount Wrangell, Alaska. J. Geophys. Res., 112, D10208. doi: 10.1029/ 2006JD008121]. However, these impacts on the ice core site in each event scale have not been investigated. Hence, the present paper focuses on the material transport and deposition processes for further understanding these impacts on the ice core. The variations in dust and tritium concentrations in spring in an ice core taken at Mt. Wrangell, Alaska are explained by meteorological analysis and simulation of trajectories associated with Asian dust outbreaks and STT. Material transport and deposition at Mt. Wrangell are examined in two contrasting years (2001 and 2002). Dust and tritium concentrations both reached peak values in the early spring of 2002, while the dust peak occurred in early spring and the tritium peak occurred in late spring in 2001. Six severe East Asian transpacific dust storms over this period are modeled by forward trajectory and meteorologically analyzed. It is found that 5 of 6 events contributed to the ice core record in Alaska. Stratospheric air is also transported to the ice core site in most cases. Tritium deposition is found to have been suppressed in the cases of the 2001 dust storms due to lack of snowfall at appropriate times. Taken the detailed transport and deposition processes after the severe dust storms with atmospheric circulations into account, we can well explain spring dust and tritium variations in the Mount Wrangell ice core.
机译:亚洲尘埃暴发与春季平流层至对流层运移(STT)之间的年际联系由阿拉斯加的弗兰格尔山冰芯[Yasunari,TJ,Shiraiwa,T.,Kanamori, S.,藤井,Y.,Igarashi,M.,K. Yamazaki,CS,Benson,CS,Hondoh,T.,2007。从山中的冰芯中检测到北太平洋地区的大气尘埃和tri的年内变化。阿拉斯加弗兰格尔。 J.地球物理。 Res.112,D10208。 doi:10.1029 / 2006JD008121]。但是,尚未研究每种事件规模对冰芯站点的这些影响。因此,本文着重于材料的运输和沉积过程,以进一步了解这些对冰芯的影响。在Mt采集的冰芯中,春季尘埃和concentrations浓度的变化。阿拉斯加的弗兰格尔(Wrangell)通过气象分析和模拟与亚洲沙尘暴和STT相关的轨迹进行了解释。物质运输和沉积在山。弗兰格尔在两个截然不同的年份(2001年和2002年)进行了研究。尘埃和tri的浓度都在2002年初的春季达到峰值,而尘埃的峰值发生在2001年的早春,而peak的峰值发生在2001年的春末。该时期的六次严重的东亚跨太平洋沙尘暴是通过前向轨迹和气象分析。已发现6个事件中有5个促成了阿拉斯加的冰芯记录。在大多数情况下,平流层空气也被输送到冰芯位置。由于在适当的时候没有降雪,在2001年的沙尘暴中发现的沉积被抑制了。考虑到严重的沙尘暴和大气环流之后的详细运输和沉积过程,我们可以很好地解释Wrangell山冰芯中的春季尘埃和tri的变化。

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