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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Using limited time period trends as a means to determine attribution of discrepancies in microwave sounding unit–derived tropospheric temperature time series
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Using limited time period trends as a means to determine attribution of discrepancies in microwave sounding unit–derived tropospheric temperature time series

机译:利用有限的时间趋势的一种手段确定属性的差异微波探测unit-derived对流层温度时间序列

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摘要

Limited time period running trends are created from various microwave sounding unit (MSU) difference time series between the University of Alabama in Huntsville and Remote Sensing System (RSS) group's lower troposphere (LT) and mid troposphere to lower stratosphere channels. This is accomplished in an effort to determine the causes of the greatest discrepancies between the two data sets. Results indicate the greatest discrepancies were over time periods where NOAA 11 through NOAA 15 adjustments were applied to the raw LT data over land. Discrepancies in the LT channel are shown to be dominated by differences in diurnal correction methods due to orbital drift; however, discrepancies from target parameter differences are also present. Comparison of MSU data with the reduced Radiosonde Atmospheric Temperature Products for Assessing Climate radiosonde data set indicates that RSS's method (use of climate model) of determining diurnal effects is likely overestimating the correction in the LT channel. Diurnal correction signatures still exist in the RSS LT time series and are likely affecting the long-term trend with a warm bias. Our findings enhance the importance of understanding temporal changes in the atmospheric temperature trend profile and their implications on current climate studies.
机译:有限的时间内创建运行趋势从各种微波探测装置(密歇根州立大学)大学的时间序列之间的差异阿拉巴马州的亨茨维尔和遥感系统(RSS)集团的低对流层(LT)和中期平流层对流层较低的渠道。为了确定有何意义之间的最大差异的原因两个数据集。差异是随着时间的推移,时间在美国国家海洋和大气管理局11通过NOAA 15调整申请原始的LT数据。LT通道是由所示由于昼夜差异校正方法轨道漂移;参数也存在差异。密歇根州立大学的比较数据与减少无线电探空仪大气温度产品评估气候无线电探空仪数据集表示RSS的方法(用气候模型)确定昼夜效果是可能的高估了LT通道校正。日修正签名中仍然存在RSS LT时间序列和可能影响长期趋势与温暖的偏见。加强了解时间的重要性大气温度的变化趋势在当前气候的形象及其意义研究。

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