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Sensitivity of Amazonian TOA flux diurnal cycle composite monthly variability to choice of reanalysis

机译:亚马逊TOA通量日循环复合月变化对重新分析选择的敏感性

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摘要

Amazonian deep convection experiences a strong diurnal cycle driven by the cycle in surface sensible heat flux, which contributes to a significant diurnal cycle in the top of the atmosphere (TOA) radiative flux. Even when accounting for seasonal variability, the TOA flux diurnal cycle varies significantly on the monthly timescale. Previous work shows evidence supporting a connection between variability in the convective and radiative cycles, likely modulated by variability in monthly atmospheric state (e.g., convective instability). The hypothesized relationships are further investigated with regression analysis of the radiative diurnal cycle and atmospheric state using additional meteorological variables representing convective instability and upper tropospheric humidity. The results are recalculated with three different reanalyses to test the reliability of the results. The radiative diurnal cycle sensitivity to upper tropospheric humidity is about equal in magnitude to that of convective instability. In addition, the results are recalculated with the data subdivided into the wet and dry seasons. Overall, clear‐sky radiative effects have a dominant role in radiative diurnal cycle variability during the dry season. Because of this, even in a convectively active region, the clear‐sky radiative effects must be accounted for in order to fully explain the monthly variability in diurnal cycle. Finally, while there is general agreement between the different reanalysis‐based results when examining the full data time domain (without regard to time of year), there are significant disagreements when the data are divided into wet and dry seasons. The questionable reliability of reanalysis data is a major limitation.
机译:亚马孙深对流经历了由表面显热通量的循环驱动的强大的昼夜循环,这有助于大气顶部(TOA)辐射通量的显着的昼夜循环。即使考虑到季节性变化,TOA通量的昼夜周期在每月时间尺度上也会有很大变化。先前的工作表明,证据支持对流周期和辐射周期之间的变化之间的联系,这很可能受月度大气状态的变化(例如对流不稳定性)的影响。通过使用代表对流不稳定性和对流层上方湿度的附加气象变量,对辐射的昼夜周期和大气状态进行回归分析,进一步研究了假设的关系。通过三种不同的重新分析对结果进行重新计算,以测试结果的可靠性。辐射对日对流层湿度的昼夜循环敏感性的大小与对流不稳定性大致相等。此外,将结果重新计算,并将数据分为干季和湿季。总体而言,晴空天的辐射效应在干旱季节的辐射昼夜周期变化中起主要作用。因此,即使在对流活跃的地区,也必须考虑晴空辐射的影响,以便充分解释昼夜周期的月变化。最后,虽然在检查整个数据时域(不考虑一年中的时间)时,基于重新分析的不同结果之间达成了普遍共识,但将数据分为湿季和旱季时存在很大分歧。重新分析数据的可疑可靠性是一个主要限制。

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