Hurst Dale F, Lambert Alyn, Read William G, Davis Sean M, Rosenlof Karen H, Hall Emrys G, Jordan Allen F, Oltmans Samuel J
Cooperative Institute for Research in Environmental Sciences, University of Colorado, Boulder, Colorado, USA.
Global Monitoring Division, NOAA Earth System Research Laboratory, Boulder, Colorado, USA.
J Geophys Res Atmos. 2014 Feb 16;119(3):1612-1625. doi: 10.1002/2013JD020757. Epub 2014 Feb 6.
Differences between stratospheric water vapor measurements by NOAA frost point hygrometers (FPHs) and the Aura Microwave Limb Sounder (MLS) are evaluated for the period August 2004 through December 2012 at Boulder, Colorado, Hilo, Hawaii, and Lauder, New Zealand. Two groups of MLS profiles coincident with the FPH soundings at each site are identified using unique sets of spatiotemporal criteria. Before evaluating the differences between coincident FPH and MLS profiles, each FPH profile is convolved with the MLS averaging kernels for eight pressure levels from 100 to 26 hPa (~16 to 25 km) to reduce its vertical resolution to that of the MLS water vapor retrievals. The mean FPH - MLS differences at every pressure level (100 to 26 hPa) are well within the combined measurement uncertainties of the two instruments. However, the mean differences at 100 and 83 hPa are statistically significant and negative, ranging from -0.46 ± 0.22 ppmv (-10.3 ± 4.8%) to -0.10 ± 0.05 ppmv (-2.2 ± 1.2%). Mean differences at the six pressure levels from 68 to 26 hPa are on average 0.8% (0.04 ppmv), and only a few are statistically significant. The FPH - MLS differences at each site are examined for temporal trends using weighted linear regression analyses. The vast majority of trends determined here are not statistically significant, and most are smaller than the minimum trends detectable in this analysis. Except at 100 and 83 hPa, the average agreement between MLS retrievals and FPH measurements of stratospheric water vapor is better than 1%.
2004年8月至2012年12月期间,在科罗拉多州博尔德、夏威夷希洛和新西兰劳德,对美国国家海洋和大气管理局(NOAA)霜点湿度计(FPH)与奥拉卫星微波临边探测仪(MLS)的平流层水汽测量差异进行了评估。利用独特的时空标准集,识别出与每个站点FPH探测同时进行的两组MLS廓线。在评估同时进行的FPH和MLS廓线之间的差异之前,每个FPH廓线与100至26 hPa(约16至25公里)八个压力层的MLS平均核进行卷积,以将其垂直分辨率降低到MLS水汽反演的分辨率。每个压力层(100至26 hPa)的FPH - MLS平均差异完全在两种仪器的综合测量不确定度范围内。然而,100和83 hPa处的平均差异具有统计学意义且为负,范围从-0.46±0.22 ppmv(-10.3±4.8%)到-0.10±0.05 ppmv(-2.2±1.2%)。68至26 hPa六个压力层的平均差异平均为0.8%(0.04 ppmv),只有少数具有统计学意义。使用加权线性回归分析检查每个站点的FPH - MLS差异的时间趋势。这里确定的绝大多数趋势没有统计学意义,并且大多数小于该分析中可检测到的最小趋势。除了100和83 hPa外,MLS反演与FPH平流层水汽测量之间的平均一致性优于1%。