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Role of Changes in Mean Temperatures versus Temperature Gradients in the Recent Widening of the Hadley Circulation

机译:平均温度相对于温度梯度的变化在最近哈德利环流扩大中的作用

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摘要

The Hadley circulation (HC) has widened in recent decades, and it widens as the climate warms in simulations. But the mechanisms responsible for the widening remain unclear, and the widening in simulations is generally smaller than observed.udTo identify mechanisms responsible for the HC widening and for model–observation discrepancies, this study analyzes how interannual variations of tropical-mean temperatures and meridional temperature gradients influence the HC width. Changes in mean temperatures are part of any global warming signal, whereas changes in temperature gradients are primarily associated with ENSO. Within this study, 6 reanalysis datasets, 22 Atmospheric Modeling Intercomparison Project (AMIP) simulations, and 11 historical simulations from phase 5 of the Climate Modeling Intercomparison Project (CMIP5) are analyzed, covering the years 1979–2012. It is found that the HC widens as mean temperatures increase or as temperature gradients weaken in most reanalyses and climate models. On average, climate models exhibit a smaller sensitivity of HC width to changes in mean temperatures and temperature gradients than do reanalyses. However, the sensitivities differ substantially among reanalyses, rendering the HC response to mean temperatures in climate models not statistically different from that in reanalyses.udWhile global-mean temperatures did not increase substantially between 1997 and 2012, the HC continued to widen in most reanalyses. The analysis here suggests that the HC widening from 1979 to 1997 is primarily the result of global warming, whereas the widening of the HC from 1997 to 2012 is associated with increased midlatitude temperatures and hence reduced temperature gradients during this period.
机译:近几十年来,哈德利环流(HC)不断扩大,并且随着模拟气候变暖而扩大。但是,造成这种现象的机制尚不清楚,而且模拟的结果通常比观察到的要小。 ud为了确定造成HC扩大和模型观测差异的机制,本研究分析了热带平均温度和子午线的年际变化温度梯度会影响HC宽度。平均温度的变化是任何全球变暖信号的一部分,而温度梯度的变化主要与ENSO有关。在这项研究中,分析了6个再分析数据集,22个大气模拟比对项目(AMIP)模拟和11个气候模拟比对项目(CMIP5)第五阶段的历史模拟,涵盖了1979-2012年。在大多数再分析和气候模型中,发现HC随着平均温度升高或温度梯度减弱而扩大。平均而言,与重新分析相比,气候模型显示的HC宽度对平均温度和温度梯度变化的敏感性较小。但是,重新分析之间的敏感性差异很大,这使得HC对气候模型中平均温度的响应与重新分析在统计学上没有统计学差异。 ud尽管全球平均温度在1997年至2012年之间没有显着增加,但在大多数重新分析中HC仍在继续扩大。此处的分析表明,从1979年至1997年HC的扩展主要是全球变暖的结果,而从1997年至2012年HC的扩展与中纬度温度升高有关,因此在此期间温度梯度减小。

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