Weigel K, Rozanov A, Azam F, Bramstedt K, Damadeo R, Eichmann K-U, Gebhardt C, Hurst D, Kraemer M, Lossow S, Read W, Spelten N, Stiller G P, Walker K A, Weber M, Bovensmann H, Burrows J P
Institute of Environmental Physics - IUP, University of Bremen, Bremen, Germany.
NASA Langley Research Center, Hampton, Virginia, USA.
Atmos Meas Tech. 2016;9:133-158. doi: 10.5194/amt-9-133-2016. Epub 2016 Jan 18.
The SCanning Imaging Absorption spectroMeter for Atmospheric CHartographY (SCIAMACHY) aboard the Envisat satellite provided measurements from August 2002 until April 2012. SCIAMACHY measured the scattered or direct sunlight using different observation geometries. The limb viewing geometry allows the retrieval of water vapour at about 10-25 km height from the near-infrared spectral range (1353-1410 nm). These data cover the upper troposphere and lower stratosphere (UTLS), a region in the atmosphere which is of special interest for a variety of dynamical and chemical processes as well as for the radiative forcing. Here, the latest data version of water vapour (V3.01) from SCIAMACHY limb measurements is presented and validated by comparisons with data sets from other satellite and in situ measurements. Considering retrieval tests and the results of these comparisons, the V3.01 data are reliable from about 11 to 23 km and the best results are found in the middle of the profiles between about 14 and 20 km. Above 20 km in the extra tropics V3.01 is drier than all other data sets. Additionally, for altitudes above about 19 km, the vertical resolution of the retrieved profile is not sufficient to resolve signals with a short vertical structure like the tape recorder. Below 14 km, SCIAMACHY water vapour V3.01 is wetter than most collocated data sets, but the high variability of water vapour in the troposphere complicates the comparison. For 14-20 km height, the expected errors from the retrieval and simulations and the mean differences to collocated data sets are usually smaller than 10 % when the resolution of the SCIAMACHY data is taken into account. In general, the temporal changes agree well with collocated data sets except for the Northern Hemisphere extratropical stratosphere, where larger differences are observed. This indicates a possible drift in V3.01 most probably caused by the incomplete treatment of volcanic aerosols in the retrieval. In all other regions a good temporal stability is shown. In the tropical stratosphere an increase in water vapour is found between 2002 and 2012, which is in agreement with other satellite data sets for overlapping time periods.
搭载在恩维斯at卫星上的大气绘图扫描成像吸收光谱仪(SCIAMACHY)从2002年8月至2012年4月进行了测量。SCIAMACHY使用不同的观测几何结构测量散射或直射阳光。边缘观测几何结构允许从近红外光谱范围(1353 - 1410纳米)反演大约10 - 25千米高度处的水汽。这些数据覆盖了对流层上部和平流层下部(UTLS),这是大气中的一个区域,对于各种动力和化学过程以及辐射强迫具有特殊意义。在此,展示了SCIAMACHY边缘测量的最新水汽数据版本(V3.01),并通过与其他卫星和实地测量数据集进行比较来验证。考虑到反演测试和这些比较的结果,V3.01数据在大约11至23千米范围内是可靠的,并且在大约14至20千米之间的剖面中间发现了最佳结果。在热带地区高于20千米处,V3.01比所有其他数据集更干燥。此外,对于高于约19千米的高度,反演剖面的垂直分辨率不足以分辨像磁带记录器那样具有短垂直结构的信号。在14千米以下,SCIAMACHY水汽V3.01比大多数并置数据集更湿润,但对流层中水汽的高变率使比较变得复杂。对于14 - 20千米高度,当考虑到SCIAMACHY数据的分辨率时,反演和模拟的预期误差以及与并置数据集的平均差异通常小于10%。总体而言,除了在北半球温带平流层观察到较大差异外,时间变化与并置数据集吻合良好。这表明V3.01可能存在漂移,最有可能是由于反演中对火山气溶胶处理不完整导致的。在所有其他区域都显示出良好的时间稳定性。在热带平流层中,发现2002年至2012年期间水汽增加,这与其他卫星数据集在重叠时间段内的情况一致。