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Regional energy budget control of the intertropical convergence zone and application to mid-Holocene rainfall

机译:热带辐合带区域能量收支控制及其在中全新世降水中的应用

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Shifts in the latitude of the intertropical convergence zone-a region of intense tropical rainfall-have often been explained through changes in the atmospheric energy budget, specifically through theories that tie rainfall to meridional energy fluxes. These quantitative theories can explain shifts in the zonal mean, but often have limited relevance for regional climate shifts, such as a period of enhanced precipitation over Saharan Africa during the mid-Holocene. Here we present a theory for regional tropical rainfall shifts that utilizes both zonal and meridional energy fluxes. We first identify a qualitative link between zonal and meridional energy fluxes and rainfall variations associated with the seasonal cycle and the El Nino/Southern Oscillation. We then develop a quantitative theory based on these fluxes that relates atmospheric energy transport to tropical rainfall. When applied to the orbital configuration of the mid-Holocene, our theory predicts continental rainfall shifts over Africa and Southeast Asia that are consistent with complex model simulations. However, the predicted rainfall over the Sahara is not sufficient to sustain vegetation at a level seen in the palaeo-record, which instead requires an additional large energy source such as that due to reductions in Saharan surface albedo. We thus conclude that additional feedbacks, such as those involving changes in vegetation or soil type, are required to explain changes in rainfall over Africa during the mid-Holocene.
机译:通常通过大气能量收支的变化,特别是通过将降雨与子午能量通量联系在一起的理论来解释热带辐合带(一个热带强降雨区)纬度的变化。这些定量理论可以解释区域平均值的变化,但通常与区域气候变化的相关性有限,例如在全新世中期,撒哈拉以南非洲降水增加的时期。在这里,我们介绍了利用纬向和经向能量通量的区域热带降雨转移的理论。我们首先确定纬向和经向能量通量与与季节周期和厄尔尼诺/南方涛动有关的降雨变化之间的定性联系。然后,我们基于这些通量建立一种定量理论,将大气能量的传输与热带降雨联系起来。当应用于全新世中期的轨道结构时,我们的理论预测,非洲和东南亚的大陆降雨转移与复杂的模型模拟是一致的。但是,撒哈拉沙漠上的预测降雨不足以使植被维持在古记录所见的水平,这反而需要额外的大型能源,例如由于撒哈拉沙漠表面反照率的减少。因此,我们得出结论,需要全新的反馈,例如涉及植被或土壤类型变化的反馈,以解释全新世中期非洲降水的变化。

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