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Interpreting the cloud cover – aerosol optical depth relationship found in satellite data using a general circulation model

机译:解释使用一般循环模型的卫星数据中发现的云覆盖 - 气溶胶光学深度关系

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Statistical analysis of satellite data shows a positive correlation between aerosol optical depth (AOD) and total cloud cover (TCC). Reasons for this relationship have been disputed in recent literature. The aim of this study is to explore how different processes contribute to one model's analog of the positive correlation between aerosol optical depth and total cloud cover seen in the satellite retrievals. We compare the slope of the linear regression between the logarithm of TCC and the logarithm of AOD, or the strength of the relationship, as derived from three satellite data sets to the ones simulated by a global aerosol-climate model. We analyse model results from two different simulations with and without a parameterisation of aerosol indirect effects, and using dry compared to humidified AOD. Perhaps not surprisingly we find that no single one of the hypotheses discussed in the literature is able to uniquely explain the positive relationship. However the dominant contribution to the model's AOD-TCC relationship can be attributed to aerosol swelling in regions where humidity is high and clouds are coincidentally found. This finding leads us to hypothesise that much of the AOD-TCC relationship seen in the satellite data is also carried by such a process, rather than the direct effects of the aerosols on the cloud fields themselves.
机译:卫星数据的统计分析显示了气溶胶光学深度(AOD)和总云覆盖(TCC)之间的正相关性。这种关系的原因在最近的文献中得到了争议。本研究的目的是探讨不同的过程如何有助于一种模型的模拟气溶胶光学深度和卫星检索中看到的总云盖之间的正相关的模拟。我们比较TCC对数与AOD对数的线性回归的斜率,或者关系的力量,从三颗卫星数据集中导出给由全球气溶胶气候模型模拟的三种卫星数据集。我们分析了两个不同模拟的模型结果,而没有气溶胶间接效应的参数,并且与加湿AOD相比使用干燥。也许毫不奇怪,我们发现文献中讨论的任何一个假设都无法唯一解释积极的关系。然而,模型的AOD-TCC关系的主导贡献可以归因于湿度高的区域肿胀,并且掺入云的区域。这一发现导致我们假设卫星数据中看到的大部分AOD-TCC关系也被这种过程携带,而不是云领域本身的气溶胶的直接影响。

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