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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >AO/NAO response to climate change: 1. Respective influences of stratospheric and tropospheric climate changes
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AO/NAO response to climate change: 1. Respective influences of stratospheric and tropospheric climate changes

机译:AO / NAO对气候变化的反应:1.平流层和对流层气候变化的各自影响

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We utilize the GISS Global Climate Middle Atmosphere Model and eight different climate change experiments, many of them focused on stratospheric climate forcings, to assess the relative influence of tropospheric and stratospheric climate change on the extratropical circulation indices (Arctic Oscillation, AO; North Atlantic Oscillation, NAO). The experiments are run in two different ways: with variable sea surface temperatures (SSTs) to allow for a full tropospheric climate response, and with specified SSTs to minimize the tropospheric change. The results show that experiments with tropospheric warming or stratospheric cooling produce more positive AO/NAO indices. Experiments with tropospheric cooling or stratospheric warming produce a negative AO/NAO response. For the typical magnitudes of tropospheric and stratospheric climate changes, the tropospheric response dominates; results are strongest when the tropospheric and stratospheric influences are producing similar phase changes. Both regions produce their effect primarily by altering wave propagation and angular momentum transports, but planetary wave energy changes accompanying tropospheric climate change are also important. Stratospheric forcing has a larger impact on the NAO than on the AO, and the angular momentum transport changes associated with it peak in the upper troposphere, affecting all wavenumbers. Tropospheric climate changes influence both the AO and NAO with effects that extend throughout the troposphere. For both forcings there is often vertical consistency in the sign of the momentum transport changes, obscuring the difference between direct and indirect mechanisms for influencing the surface circulation.
机译:我们利用GISS全球气候中间大气模型和八个不同的气候变化实验,其中许多研究集中在平流层气候强迫上,以评估对流层和平流层气候变化对温带环流指数的相对影响(北极涛动,AO;北大西洋涛动) ,NAO)。实验以两种不同的方式进行:使用可变的海面温度(SST)来实现对流层气候的完全响应,并使用特定的SST来使对流层的变化最小化。结果表明,对流层变暖或平流层变冷的实验产生了更正的AO / NAO指数。对流层冷却或平流层变暖的实验产生负AO / NAO响应。对于平流层和平流层气候变化的典型幅度而言,对流层响应占主导。当对流层和平流层的影响产生相似的相变时,结果最强。这两个地区主要通过改变波传播和角动量传输来产生影响,但是伴随对流层气候变化的行星波能量变化也很重要。平流层强迫对NAO的影响大于对AO的影响,与之相关的角动量输运变化在对流层上层达到峰值,影响所有波数。对流层的气候变化影响了AO和NAO,影响范围遍及整个对流层。对于这两个强迫,动量传递变化的符号通常具有垂直一致性,从而掩盖了影响表面循环的直接机制和间接机制之间的差异。

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