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Compensation between resolved wave driving and parameterized orographic gravity wave driving of the Brewer–Dobson circulation and its response to climate change

机译:Brewer–Dobson环流的解析波驱动和参数化地形重力波驱动之间的补偿及其对气候变化的响应

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摘要

Following recent findings, the interaction between resolved (Rossby) wave drag and parameterized orographic gravity wave drag (OGWD) is investigated, in terms of their driving of the Brewer–Dobson circulation (BDC), in a comprehensive climate model. To this end, the parameter that effectively determines the strength of OGWD in present-day and doubled CO2 simulations is varied. The authors focus on the NorthernudHemisphere during winter when the largest response of the BDC to climate change is predicted to occur. It is found that increases in OGWD are to a remarkable degree compensated by a reduction in midlatitude resolved wave drag, thereby reducing the impact of changes in OGWD on the BDC. This compensation is also found for the response to climate change: changes in the OGWD contribution to the BDC response to climate change are compensated by opposite changes in the resolved wave drag contribution to the BDC response to climate change, thereby reducing the impact of changes in OGWD on the BDC response to climate change.udBy contrast, compensation does not occur at northern high latitudes, where resolved wave driving and the associated downwelling increase with increasing OGWD, both for the present-day climate and the response to climate change. These findings raise confidence in the credibility of climate model projections of the strengthened BDC.
机译:根据最近的发现,在一个综合气候模型中,根据驱动布鲁尔-多布森环流(BDC)的方法,研究了解析(Rossby)波阻力和参数化地形重力波阻力(OGWD)之间的相互作用。为此,有效地确定OGWD强度的参数在当今和CO2模拟中已经改变。作者集中在冬季北半球,预计BDC对气候变化的反应最大。发现通过中纬度分辨波阻力的减少可以显着补偿OGWD的增加,从而减少OGWD变化对BDC的影响。还发现了对气候变化响应的补偿:OGWD对BDC对气候变化响应的贡献的变化通过已分解的波浪阻力对BDC对气候变化响应的贡献的相反变化来补偿,从而减少了气候变化的影响。 ud相比之下,北部高纬度地区不会发生补偿,在北部高纬度地区,无论是当前气候还是对气候变化的响应,在北部高纬度地区,随着OGWD的增加,解析的波浪驱动和相关的下行趋势都将增加。这些发现提高了人们对加强的BDC的气候模型预测的可信度的信心。

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