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The SPARC water vapor assessment II: intercomparison of satellite and ground-based microwave measurements

机译:SPARC水蒸气评估II:卫星和基于地面微波测量的互通

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As part of the second SPARC (Stratosphere–troposphere Processes And their Role in Climate) water vapor assessment (WAVAS-II), we present measurements taken from or coincident with seven sites from which ground-based microwave instruments measure water vapor in the middle atmosphere. Six of the ground-based instruments are part of the Network for the Detection of Atmospheric Composition Change (NDACC) and provide datasets that can be used for drift and trend assessment. We compare measurements from these ground-based instruments with satellite datasets that have provided retrievals of water vapor in the lower mesosphere over extended periods since 1996. We first compare biases between the satellite and ground-based instruments from the upper stratosphere to the upper mesosphere. We then show a number of time series comparisons at 0.46?hPa, a level that is sensitive to changes in H2O and CH4 entering the stratosphere but, because almost all CH4 has been oxidized, is relatively insensitive to dynamical variations. Interannual variations and drifts are investigated with respect to both the Aura Microwave Limb Sounder (MLS; from 2004 onwards) and each instrument's climatological mean. We find that the variation in the interannual difference in the mean H2O measured by any two instruments is typically ?~??1%. Most of the datasets start in or after 2004 and show annual increases in H2O of 0–1?%?yr?1. In particular, MLS shows a trend of between 0.5?%?yr?1 and 0.7?%?yr?1 at the comparison sites. However, the two longest measurement datasets used here, with measurements back to 1996, show much smaller trends of +0.1?%?yr?1 (at Mauna Loa, Hawaii) and ?0.1?%?yr?1 (at Lauder, New Zealand).
机译:作为第二个SPARC的一部分(平流层 - 对流层流程及其在气候中的作用)水蒸气评估(WAVAS-II),我们呈现出从七个地点的测量或一致的测量,其中七个地点从哪个基于地面的微波仪器测量中间大气中的水蒸气。六个基于地面的仪器是用于检测大气组成变化(NDACC)的网络的一部分,并提供可用于漂移和趋势评估的数据集。我们将这些基于地面仪器的测量与卫星数据集进行比较,该数据集在延长的时期提供了较低的介质层中的水蒸气检索,从而在延长的时间内在延长的时期中,我们首先将卫星和地面仪器之间的偏差与上部平流层之间的偏见进行比较到上部椎间圈。然后,我们在0.46时显示了许多时间序列比较,一个水平对H2O和CH4的变化敏感的水平,因为几乎所有CH4被氧化,对动态变化相对不敏感。针对Aura微波肢体发声器(MLS;从2004年开始)和每个仪器的续集变化和漂移进行了依赖性变化和漂移。我们发现,通过任何两种仪器测量的平均H2O的平均值差异的变化通常是?〜?? 1%。大多数数据集开始于2004年或之后,并显示0-1?%?1的H2O的年增长率?1。特别地,MLS在比较位点处显示出0.5℃Δ1和0.7?%Δ1和0.7?%α的趋势。然而,这里使用的两个最长的测量数据集,测量返回1996年,显示出更小的趋势+0.1?%?1(在Mauna Loa,Hawaii)和?0.1?%?YR?1(在劳德,新的西兰)。
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