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The effect of horizontal gradients and spatial measurement resolution on the retrieval of global vertical NO2 distributions from SCIAMACHY measurements in limb only mode

机译:水平梯度和空间测量分辨率对仅肢体模式下SCIAMACHY测量中反演全球垂直NO2分布的影响

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摘要

Limb measurements provided by the Scanning Imaging Absorption spectroMeter for Atmospheric CHartographY (SCIAMACHY) on the ENVISAT satellite allow retrieving stratospheric profiles of various trace gases on a global scale. Combining measurements of the same air volume from different viewing positions along the orbit, a tomographic approach can be applied and 2-D distribution fields of stratospheric trace gases can be acquired in one inversion. With this approach, it is possible to improve the accounting for the effect of horizontal gradients in the trace gas distribution on the profile retrieval. This was shown in a previous study for the retrieval of NO2 and OClO profiles in the Arctic region near the polar vortex boundary.In this study, the tomographic retrieval is applied on measurements during special limb-only orbits performed on 14 December 2008. For these orbits the distance between consecutive limb scanning sequences was reduced to ~3.3° of the orbital circle (i.e. more than two times with respect to the nominal operational mode). Thus, the same air volumes are scanned successively by more than one scanning sequence also for midlatitudes and the tropics. It is found that the profiles obtained by the tomographic 2-D approach show significant differences to those obtained by the 1-D approach. In particular, for regions close to stratospheric transport barriers (i.e. near to the edge of the polar vortex and subtropical transport barrier) up to 50% larger or smaller NO2 number densities (depending on the sign of the gradient along the line of sight) for altitudes below the peak of the profile (around 20 km) are obtained.The limb-only measurements allow examining the systematic error if the horizontal gradient is not accounted for, and studying the impact of the gradient strength on the profile retrieval on a global scale. The findings for the actual SCIAMACHY observations are verified by sensitivity studies for simulated data for which the NO2 distributions to be retrieved are known in advance. In addition, the impact of the horizontal distance between consecutive limb scanning sequences on the quality of the tomographic 2-D retrieval is investigated and a possibility to take into account the horizontal gradients by an interpolation approach is studied.
机译:由ENVISAT卫星上的大气成图扫描成像吸收光谱仪(SCIAMACHY)提供的肢体测量值,可以在全球范围内检索各种痕量气体的平流层剖面。结合沿轨道从不同观察位置对相同风量的测量,可以采用层析成像方法,并且可以一次反转获得平流层痕量气体的二维分布场。通过这种方法,可以改善对痕量气体分布中的水平梯度对剖面检索的影响的解释。在先前的研究中,该结果用于在极地涡旋边界附近的北极地区检索NO2和OClO剖面。在这项研究中,层析成像检索适用于2008年12月14日进行的仅肢体专用轨道的测量。连续的肢体扫描序列之间的距离减小到轨道圆的〜3.3°(即,相对于标称工作模式超过两倍)。因此,对于中纬度和热带地区,同样的风量也将通过一个以上的扫描顺序连续进行扫描。发现通过断层摄影2-D方法获得的轮廓与通过1-D方法获得的轮廓显示出显着差异。特别是,对于靠近平流层传输障碍的区域(即靠近极地涡旋和亚热带传输障碍的边缘),NO2数量密度最多或小于50%(取决于沿视线的梯度符号),获得低于轮廓峰(大约20 km)的高度的高度。仅进行肢体测量就可以检查如果不考虑水平坡度的系统误差,并研究坡度强度在全球范围内对轮廓检索的影响。实际SCIAMACHY观测结果通过敏感性研究对模拟数据进行了验证,对于该模拟数据,要事先获取要获取的NO2分布。此外,研究了连续肢体扫描序列之间的水平距离对断层二维二维检索质量的影响,并研究了通过插值法考虑水平梯度的可能性。

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