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首页> 外文期刊>Atmospheric Measurement Techniques >Fast simulators for satellite cloud optical centroid pressure retrievals; evaluation of OMI cloud retrievals
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Fast simulators for satellite cloud optical centroid pressure retrievals; evaluation of OMI cloud retrievals

机译:用于卫星云光学质心压力检索的快速模拟器; OMI云检索的评估

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摘要

The cloud Optical Centroid Pressure (OCP) is a satellite-derived parameter that is commonly used in trace-gas retrievals to account for the effects of clouds on near-infrared through ultraviolet radiance measurements. Fast simulators are desirable to further expand the use of cloud OCP retrievals into the operational and climate communities for applications such as data assimilation and evaluation of cloud vertical structure in general circulation models. In this paper, we develop and validate fast simulators that provide estimates of the cloud OCP given a vertical profile of optical extinction. We use a pressure-weighting scheme where the weights depend upon optical parameters of clouds and/or aerosols. A cloud weighting function is easily extracted using this formulation. We then use fast simulators to compare two different satellite cloud OCP retrievals, from the Ozone Monitoring Instrument (OMI), with estimates based on collocated cloud extinction profiles from a combination of CloudSat radar and MODIS visible radiance data. These comparisons are made over a wide range of conditions to provide a comprehensive validation of the OMI cloud OCP retrievals. We find generally good agreement between OMI cloud OCPs and those predicted by CloudSat. However, the OMI cloud OCPs from the two independent algorithms agree better with each other than either does with the estimates from CloudSat/MODIS. Differences between OMI cloud OCPs and those based on CloudSat/MODIS may result from undetected snow/ice at the surface, cloud 3-D effects, cases of low clouds obscurred by ground-clutter in CloudSat observations and by opaque high clouds in CALIPSO lidar observations, and the fact that CloudSat/CALIPSO only observes a relatively small fraction of an OMI field-of-view.
机译:云的光学质心压力(OCP)是卫星衍生的参数,通常在痕量气体检索中使用,以通过紫外辐射测量说明云对近红外的影响。需要快速模拟器来进一步将云OCP检索的用途扩展到操作和气候社区,以用于诸如数据同化和一般环流模型中的云垂直结构评估之类的应用。在本文中,我们开发并验证了快速仿真器,这些仿真器可以在垂直消光的情况下提供对云OCP的估计。我们使用压力加权方案,其中权重取决于云和/或气溶胶的光学参数。使用这种公式很容易提取云加权函数。然后,我们使用快速模拟器将来自臭氧监测仪器(OMI)的两个不同的卫星云OCP检索结果与基于CloudSat雷达和MODIS可见辐射数据组合的并置云消光剖面的估计值进行比较。这些比较是在各种条件下进行的,以提供对OMI云OCP检索的全面验证。我们发现OMI云OCP与CloudSat预测的OCP云之间普遍具有良好的协议。但是,与CloudSat / MODIS的估计相比,两种独立算法的OMI云OCP彼此之间的一致性更高。 OMI云OCP与基于CloudSat / MODIS的OCP云之间的差异可能是由于未检测到表面的积雪/冰,云3-D效应,CloudSat观测中的地面杂波和CALIPSO激光雷达观测中的不透明高云所致的低云情况,以及CloudSat / CALIPSO仅观察到OMI视场的一小部分的事实。

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