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首页> 外文期刊>Journal of Climate >Atmospheric Circulation Response to an Instantaneous Doubling of CarbonTI Atmospheric Circulation Response to an Instantaneous Doubling of Carbon Dioxide. Part I: Model Experiments and Transient Thermal Response in the Troposphere
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Atmospheric Circulation Response to an Instantaneous Doubling of CarbonTI Atmospheric Circulation Response to an Instantaneous Doubling of Carbon Dioxide. Part I: Model Experiments and Transient Thermal Response in the Troposphere

机译:大气循环对二氧化碳瞬时加倍的响应大气循环对二氧化碳瞬时加倍的响应。第一部分:对流层中的模型实验和瞬态热响应

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摘要

This study aims to understand the dynamical mechanisms driving the changes in the general circulation of the atmosphere due to increased carbon dioxide (CO2) by looking into the transient step-by-step adjustment of the circulation. The transient atmospheric adjustment is examined using the National Center for Atmospheric Research Community Atmosphere Model, version 3, coupled to a slab ocean model, and the CO2 concentration in the atmosphere is uniformly and instantaneously doubled. The thermal structure and circulation response is well established after one year of integration, with the magnitudes gradually increasing afterward toward quasi equilibrium. Tropical upper-tropospheric warming occurs in the first month. The expansion of the warming in the mid-and upper troposphere to the subtropics occurs later and is found to be primarily dynamically driven due to the intensification of transient eddy momentum flux convergence and resulting anomalous descending motion in this region. The poleward displacement of the midlatitude tropospheric jet streams occurs together with the change in eddy momentum flux convergence, but only after the intensification of the subpolar westerlies in the stratosphere. The results demonstrate the importance of the tropospheric eddies in setting up the extratropical tropospheric response to global warming.
机译:这项研究旨在通过研究瞬态的循序渐进的循环调节,来了解由于二氧化碳(CO2)增加而导致大气总体循环变化的动力机制。使用美国国家大气研究共同体大气模型中心(版本3)和平板海洋模型对瞬态大气调节进行了检查,并且大气中的CO2浓度均匀且瞬时加倍。一年的整合后,热结构和循环响应就得到了很好的确立,其幅度随后逐渐趋于准平衡。热带对流层高层变暖发生在第一个月。对流层中上层和上层对层层变暖的扩展较晚发生,并且由于瞬态涡动动量通量收敛的加剧和在该区域产生的异常下降运动而被发现是主要由动力驱动的。中纬对流层急流的极移与涡动动量通量收敛的变化同时发生,但仅在平流层中的亚极西风增强后才发生。结果表明,对流层涡旋在建立对全球变暖的温带对流层响应中的重要性。

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