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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Mid-upper tropospheric methane in the high Northern Hemisphere: Spaceborne observations by AIRS, aircraft measurements, and model simulations
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Mid-upper tropospheric methane in the high Northern Hemisphere: Spaceborne observations by AIRS, aircraft measurements, and model simulations

机译:北半球高空对流层中上部的甲烷:由AIRS进行的星载观测,飞机测量和模型模拟

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摘要

Spaceborne measurements by the Atmospheric Infrared Sounder (AIRS) on the EOS/ Aqua satellite provide a global view of the methane (CH_4) distribution in the mid-upper troposphere (MUT-CH_4). The focus of this study is to examine the spatiotemporal variation of MUT-CH_4 in the high Northern Hemisphere (HNH) using AIRS retrievals, aircraft measurements, and simulations from a forward chemistry-transport model (i.e., ACTM). Data from 2004 and 2005 focusing over two regions (Alaska and Siberia) are analyzed. An important feature in the seasonal variation of CH_ 4 we found is the summer increase of MUT-CH_4, which is nearly opposite to the summer minimum of CH_4 in the marine boundary layer (MBL). This study also demonstrated an apparent increase of CHover _ 4 Alaska associated with the 2004 Alaska forest fire and a negative bias of the ACTM simulations in the HNH. The larger bias of the model simulations in the late winter to early spring may indicate possible unidentified CH_4 emission sources (e.g., the use of energy or gas leakage) during this period, but more studies will be needed due to the retrieval uncertainties in the polar winter season. The summer increase of MUT-CH_is related to 4 surface emission, but the enhanced convection in summer is likely the most important driver.
机译:EOS / Aqua卫星上的大气红外探测仪(AIRS)进行的星空测量提供了对流层中上部(MUT-CH_4)甲烷(CH_4)分布的全局视图。这项研究的重点是使用AIRS检索,飞机测量以及来自正向化学传输模型(即ACTM)的模拟,研究北半球高空(HNH)中MUT-CH_4的时空变化。分析了2004年和2005年两个地区(阿拉斯加和西伯利亚)的数据。我们发现CH_ 4的季节变化的一个重要特征是MUT-CH_4的夏季增加,这与海洋边界层(MBL)中CH_4的夏季最小值几乎相反。这项研究还表明,与2004年阿拉斯加森林大火相关的CHover _ 4阿拉斯加明显增加,并且HNH中ACTM模拟的负面影响。冬末至初春期间模型模拟的较大偏差可能表明在此期间可能存在不确定的CH_4排放源(例如,能源或气体泄漏的使用),但由于极地的回收不确定性,将需要更多的研究冬季。夏季MUT-CH_的增加与4面辐射有关,但夏季对流的增强可能是最重要的驱动力。

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