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Twenty-first century projected summer mean climate in the Mediterranean interpreted through the monsoon-desert mechanism

机译:通过季风-沙漠机制解释了二十一世纪预计的地中海夏季平均气候

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摘要

The term "monsoon-desert mechanism" indicates the relationship between the diabatic heating associated with the South Asian summer monsoon rainfall and the remote response in the western sub-tropics where long Rossby waves anchor strong descent with high subsidence. In CMIP5 twenty-first century climate scenarios, the precipitation over South Asia is projected to increase. This study investigates how this change could affect the summer climate projections in the Mediterranean region. In a linear framework the monsoon-desert mechanism in the context of climate change would imply that the change in subsidence over the Mediterranean should be strongly linked with the changes in South Asian monsoon precipitation. The steady-state solution from a linear model forced with CMIP5 model projected precipitation change over South Asia shows a broad region of descent in the Mediterranean, while the results from CMIP5 projections differ having increased descent mostly in the western sector but also decreased descent in parts of the eastern sector. Local changes in circulation, particularly the meridional wind, promote cold air advection that anchors the descent but the barotropic Rossby wave nature of the wind anomalies consisting of alternating northerlies/southerlies favors alternating descent/ascent locations. In fact, the local mid-tropospheric meridional wind changes have the strongest correlation with the regions where the difference in subsidence is largest. There decreased rainfall is mostly balanced by changes in moisture, omega and in the horizontal advection of moisture.
机译:术语“季风-沙漠机制”表示与南亚夏季风降雨相关的非绝热加热与西部亚热带的远程响应之间的关系,在西部亚热带,长的Rossby波锚定了高沉降和高沉降。在CMIP5的二十一世纪气候情景中,预计南亚的降水将增加。这项研究调查了这种变化如何影响地中海地区的夏季气候预测。在线性框架下,气候变化背景下的季风-沙漠机制将暗示,地中海沉降的变化应与南亚季风降水的变化密切相关。由CMIP5模型强迫的线性模型预测的南亚降水变化的稳态模型显示,地中海地区下降幅度较大,而CMIP5预测的结果有所不同,下降幅度主要在西部地区,但部分下降下降东部地区。局部的环流变化,特别是子午风,促进了冷空气对流,从而固定了下降,但由北/北交替组成的异常的正压罗斯比波性质有利于下降/上升的交替位置。实际上,局部对流层中午子午风变化与沉降差异最大的区域具有最强的相关性。降雨量的减少主要通过水分,ω和水分水平对流的变化来平衡。

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  • 来源
    《Climate dynamics》 |2016年第8期|2361-2371|共11页
  • 作者单位

    Ctr Euromediterraneo Cambiamenti Climat, Bologna, Italy|Ist Nazl Geofis & Vulcanol, Bologna, Italy;

    Univ Hawaii Manoa, Int Pacific Res Ctr, Honolulu, HI 96822 USA;

    Ctr Euromediterraneo Cambiamenti Climat, Bologna, Italy|Ist Nazl Geofis & Vulcanol, Bologna, Italy;

    Ctr Euromediterraneo Cambiamenti Climat, Bologna, Italy|Ist Nazl Geofis & Vulcanol, Bologna, Italy;

    Agenzia Nazl Nuove Tecnol Energia & Sviluppo Econ, Rome, Italy;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    CMIP5 projections; Monsoon-desert; Mediterranean climate;

    机译:CMIP5预测;季风荒漠;地中海气候;

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